scholarly article | Q13442814 |
P356 | DOI | 10.1016/J.MOLCEL.2010.12.011 |
P953 | full work available at URL | http://www.cell.com/article/S1097276510009676/pdf |
https://api.elsevier.com/content/article/PII:S1097276510009676?httpAccept=text/plain | ||
https://api.elsevier.com/content/article/PII:S1097276510009676?httpAccept=text/xml | ||
https://doi.org/10.1016/j.molcel.2010.12.011 | ||
https://europepmc.org/articles/PMC3021903 | ||
https://europepmc.org/articles/PMC3021903?pdf=render | ||
P3181 | OpenCitations bibliographic resource ID | 143293 |
P932 | PMC publication ID | 3021903 |
P698 | PubMed publication ID | 21172659 |
P5875 | ResearchGate publication ID | 49697145 |
P50 | author | Jeannie T. Lee | Q30068211 |
P2093 | author name string | Jing Zhao | |
Kavitha Sarma | |||
Yuya Ogawa | |||
Mark Borowsky | |||
Robert E. Kingston | |||
Daniel J. Grau | |||
Ji Joon Song | |||
Johnny T. Kung | |||
Toshiro K. Ohsumi | |||
P2860 | cites work | Genomewide analysis of PRC1 and PRC2 occupancy identifies two classes of bivalent domains | Q21092474 |
Mapping and quantifying mammalian transcriptomes by RNA-Seq | Q22122035 | ||
JARID2 regulates binding of the Polycomb repressive complex 2 to target genes in ES cells | Q24295145 | ||
Suz12 is essential for mouse development and for EZH2 histone methyltransferase activity | Q24305075 | ||
Point Mutations in the WD40 Domain of Eed Block Its Interaction with Ezh2 | Q24522690 | ||
Long non-coding RNA HOTAIR reprograms chromatin state to promote cancer metastasis | Q24607308 | ||
Genome-wide maps of chromatin state in pluripotent and lineage-committed cells | Q24632506 | ||
Molecular interplay of the noncoding RNA ANRIL and methylated histone H3 lysine 27 by polycomb CBX7 in transcriptional silencing of INK4a | Q24633736 | ||
RNA meets chromatin | Q36197886 | ||
Mechanisms regulating imprinted genes in clusters. | Q36805477 | ||
Concise review: roles of polycomb group proteins in development and disease: a stem cell perspective | Q36864512 | ||
Cancer genetics of epigenetic genes | Q36871595 | ||
Regulation of imprinting in clusters: noncoding RNAs versus insulators | Q37087590 | ||
Stem cell regulation by polycomb repressors: postponing commitment | Q37091339 | ||
Polycomb complexes and epigenetic states | Q37148660 | ||
Roles of the EZH2 histone methyltransferase in cancer epigenetics | Q37250591 | ||
Lessons from X-chromosome inactivation: long ncRNA as guides and tethers to the epigenome | Q37302890 | ||
A vertebrate Polycomb response element governs segmentation of the posterior hindbrain | Q39802279 | ||
Genome-wide analysis of Polycomb targets in Drosophila melanogaster | Q40274308 | ||
A region of the human HOXD cluster that confers polycomb-group responsiveness | Q42067778 | ||
Reconstitution of a functional core polycomb repressive complex. | Q47071233 | ||
Identification of an imprinting control region affecting the expression of all transcripts in the Gnas cluster | Q48100744 | ||
Asymmetric regulation of imprinting on the maternal and paternal chromosomes at the Dlk1-Gtl2 imprinted cluster on mouse chromosome 12. | Q48231351 | ||
Targeted mutagenesis of Tsix leads to nonrandom X inactivation | Q52173970 | ||
Tiny RNAs associated with transcription start sites in animals | Q52697120 | ||
SnapShot: imprinted gene clusters | Q53724855 | ||
EZH1 mediates methylation on histone H3 lysine 27 and complements EZH2 in maintaining stem cell identity and executing pluripotency | Q24645960 | ||
Many human large intergenic noncoding RNAs associate with chromatin-modifying complexes and affect gene expression | Q24654249 | ||
ARACHNE: a whole-genome shotgun assembler | Q24673112 | ||
Functional demarcation of active and silent chromatin domains in human HOX loci by noncoding RNAs | Q24673619 | ||
The evolution of the DLK1-DIO3 imprinted domain in mammals | Q27333130 | ||
A bivalent chromatin structure marks key developmental genes in embryonic stem cells | Q27860977 | ||
The transcriptional landscape of the mammalian genome | Q27861110 | ||
Long non-coding RNAs: insights into functions | Q28131764 | ||
Chromatin signature reveals over a thousand highly conserved large non-coding RNAs in mammals | Q28131802 | ||
Control of developmental regulators by Polycomb in human embryonic stem cells | Q28235841 | ||
The Notch signaling cascade in neuroblastoma: role of the basic helix-loop-helix proteins HASH-1 and HES-1 | Q28249698 | ||
Stem cell transcriptome profiling via massive-scale mRNA sequencing | Q28282295 | ||
CLIP: a method for identifying protein-RNA interaction sites in living cells | Q28284054 | ||
Genome regulation by polycomb and trithorax proteins | Q28289984 | ||
Nascent RNA sequencing reveals widespread pausing and divergent initiation at human promoters | Q28302903 | ||
The murine polycomb group protein Eed is required for global histone H3 lysine-27 methylation | Q28508260 | ||
Jumonji modulates polycomb activity and self-renewal versus differentiation of stem cells | Q28511395 | ||
Jarid2/Jumonji coordinates control of PRC2 enzymatic activity and target gene occupancy in pluripotent cells | Q28585926 | ||
Mouse polycomb proteins bind differentially to methylated histone H3 and RNA and are enriched in facultative heterochromatin | Q28587001 | ||
Deletion of Gtl2, imprinted non-coding RNA, with its differentially methylated region induces lethal parent-origin-dependent defects in mice | Q28588399 | ||
Polycomb complexes repress developmental regulators in murine embryonic stem cells | Q29547274 | ||
Polycomb proteins targeted by a short repeat RNA to the mouse X chromosome | Q29547359 | ||
Divergent transcription from active promoters | Q29614332 | ||
Kcnq1ot1 antisense noncoding RNA mediates lineage-specific transcriptional silencing through chromatin-level regulation | Q29614333 | ||
RNA maps reveal new RNA classes and a possible function for pervasive transcription | Q29614334 | ||
Epigenetic regulation of cellular memory by the Polycomb and Trithorax group proteins | Q29614507 | ||
Polycomb silencers control cell fate, development and cancer | Q29619697 | ||
Structure, dynamics and functions of promyelocytic leukaemia nuclear bodies | Q29620390 | ||
Jarid2 and PRC2, partners in regulating gene expression | Q33631152 | ||
Short RNAs are transcribed from repressed polycomb target genes and interact with polycomb repressive complex-2. | Q33914791 | ||
The X as model for RNA's niche in epigenomic regulation | Q34080241 | ||
Recruitment of PRC1 function at the initiation of X inactivation independent of PRC2 and silencing | Q34767759 | ||
Epigenetic properties and identification of an imprint mark in the Nesp-Gnasxl domain of the mouse Gnas imprinted locus. | Q35170038 | ||
P433 | issue | 6 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Enhancer of zeste 2 polycomb repressive complex 2 subunit | Q21496151 |
P304 | page(s) | 939–953 | |
P577 | publication date | 2010-12-22 | |
P1433 | published in | Molecular Cell | Q3319468 |
P1476 | title | Genome-wide identification of polycomb-associated RNAs by RIP-seq | |
Genome-wide Identification of Polycomb-Associated RNAs by RIP-seq | |||
P478 | volume | 40 |
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Q26822725 | Bioinformatics Tools and Novel Challenges in Long Non-Coding RNAs (lncRNAs) Functional Analysis |
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Q27001004 | Long non-coding RNA and epigenetic gene regulation of KSHV |
Q35018398 | Long non-coding RNA expression profiling of mouse testis during postnatal development |
Q37528860 | Long non-coding RNA identification over mouse brain development by integrative modeling of chromatin and genomic features |
Q36790436 | Long non-coding RNA in cancer |
Q64284670 | Long non-coding RNA in stem cell pluripotency and lineage commitment: functions and evolutionary conservation |
Q26999388 | Long non-coding RNA-dependent transcriptional regulation in neuronal development and disease |
Q37971826 | Long non-coding RNAs in Huntington's disease neurodegeneration |
Q48295735 | Long non-coding RNAs in aging organs and tissues |
Q62083228 | Long non-coding RNAs in cancer: implications for personalized therapy |
Q38961358 | Long non-coding RNAs in human early embryonic development and their potential in ART. |
Q37589709 | Long non-coding RNAs: modulators of nuclear structure and function |
Q38966959 | Long noncoding RNA (lincRNA), a new paradigm in gene expression control |
Q50910382 | Long noncoding RNA FTX inhibits hepatocellular carcinoma proliferation and metastasis by binding MCM2 and miR-374a |
Q36545222 | Long noncoding RNA HOXA-AS2 promotes gastric cancer proliferation by epigenetically silencing P21/PLK3/DDIT3 expression |
Q37052345 | Long noncoding RNA LINP1 regulates repair of DNA double-strand breaks in triple-negative breast cancer |
Q33946469 | Long noncoding RNA in liver diseases |
Q38208799 | Long noncoding RNA: significance and potential in skin biology |
Q37959132 | Long noncoding RNA: unveiling hidden layer of gene regulatory networks |
Q37873053 | Long noncoding RNAs and human disease |
Q33789606 | Long noncoding RNAs are spatially correlated with transcription factors and regulate lung development |
Q26740741 | Long noncoding RNAs in DNA methylation: new players stepping into the old game |
Q37831561 | Long noncoding RNAs in cell biology |
Q26822409 | Long noncoding RNAs in cell-fate programming and reprogramming |
Q46191604 | Long noncoding RNAs in hematopoietic malignancies |
Q33649809 | Long noncoding RNAs in imprinting and X chromosome inactivation |
Q36997564 | Long noncoding RNAs in prostate cancer: mechanisms and applications |
Q36823293 | Long noncoding RNAs in psychiatric disorders |
Q37680875 | Long noncoding RNAs, emerging players in muscle differentiation and disease. |
Q38380213 | Long noncoding RNAs: a potent source of regulation in immunity and disease |
Q34626174 | Long noncoding RNAs: an emerging link between gene regulation and nuclear organization |
Q36837377 | Long noncoding RNAs: cellular address codes in development and disease |
Q37524850 | Long noncoding RNAs: fresh perspectives into the RNA world |
Q26991873 | Long noncoding RNAs: past, present, and future |
Q39127487 | MALAT1 and HOTAIR Long Non-Coding RNAs Play Opposite Role in Estrogen-Mediated Transcriptional Regulation in Prostate Cancer Cells. |
Q37022269 | MALAT1 long ncRNA promotes gastric cancer metastasis by suppressing PCDH10. |
Q50090394 | MEG3 Long Noncoding RNA Contributes to the Epigenetic Regulation of Epithelial-Mesenchymal Transition in Lung Cancer Cell Lines. |
Q38849879 | MEG3 long noncoding RNA regulates the TGF-β pathway genes through formation of RNA-DNA triplex structures. |
Q37060496 | Mapping RNA-RNA interactome and RNA structure in vivo by MARIO. |
Q90754880 | Mapping RNA-chromatin interactions by sequencing with iMARGI |
Q64230205 | Mechanisms of Antisense Transcription Initiation with Implications in Gene Expression, Genomic Integrity and Disease Pathogenesis |
Q26752329 | Mechanisms of long noncoding RNA function in development and disease |
Q52490611 | Mechanistic insights in X-chromosome inactivation. |
Q33745576 | Methods for comprehensive experimental identification of RNA-protein interactions |
Q38845439 | Methods to Study Long Noncoding RNA Biology in Cancer |
Q38847315 | MiR-141 Inhibits Gastric Cancer Proliferation by Interacting with Long Noncoding RNA MEG3 and Down-Regulating E2F3 Expression |
Q64083529 | MicroRNAs and Long Non-Coding RNAs and Their Hormone-Like Activities in Cancer |
Q39328241 | MicroRNAs, Long Noncoding RNAs, and Their Functions in Human Disease |
Q35133711 | Microarray profiling and co-expression network analysis of circulating lncRNAs and mRNAs associated with major depressive disorder |
Q27011299 | Minireview: Long Noncoding RNAs: New “Links” Between Gene Expression and Cellular Outcomes in Endocrinology |
Q53253586 | Models of oncogenesis: an endless world? |
Q41349505 | Modular function of long noncoding RNA, COLDAIR, in the vernalization response |
Q29617829 | Modular regulatory principles of large non-coding RNAs |
Q33671162 | Modulation of chromatin modifying complexes by noncoding RNAs in trans |
Q42532656 | MolBioLib: a C++11 framework for rapid development and deployment of bioinformatics tasks |
Q38202466 | Molecular Functions of Long Non-Coding RNAs in Plants |
Q92877922 | Molecular Mechanisms Directing PRC2 Recruitment and H3K27 Methylation |
Q29618027 | Molecular Mechanisms of Long Noncoding RNAs |
Q55446405 | Molecular mechanisms and function prediction of long noncoding RNA. |
Q34604891 | Multi-disciplinary methods to define RNA–protein interactions and regulatory networks |
Q28585513 | N6-methyladenosine modification destabilizes developmental regulators in embryonic stem cells |
Q93129152 | NR2E3 is a key component in p53 activation by regulating a long noncoding RNA DINO in acute liver injuries |
Q36775565 | Natural antisense RNA promotes 3' end processing and maturation of MALAT1 lncRNA |
Q27020939 | Natural antisense transcripts |
Q34859292 | Natural antisense transcripts as therapeutic targets |
Q92162410 | Networks of mRNA Processing and Alternative Splicing Regulation in Health and Disease |
Q57160077 | New Insights Into the Long Non-coding RNA SRA: Physiological Functions and Mechanisms of Action |
Q38475233 | New insights into polar overdominance in callipyge sheep |
Q38045799 | Non-coding RNAs and EZH2 interactions in cancer: long and short tales from the transcriptome. |
Q38850158 | Non-coding RNAs in muscle differentiation and musculoskeletal disease. |
Q64983520 | Non-coding RNAs in skeletal muscle regeneration. |
Q27693295 | Non-coding RNAs: the "dark matter" of cardiovascular pathophysiology. |
Q36915025 | Noncoding RNA and Polycomb recruitment. |
Q38244618 | Noncoding RNA response to xenobiotic exposure: an indicator of toxicity and carcinogenicity |
Q36797315 | Noncoding RNAs Involved in Mammary Gland Development and Tumorigenesis: There’s a Long Way to Go |
Q35018404 | Noncoding RNAs and DNA Methylation in Plants. |
Q35794764 | Noncoding RNAs and enhancers: complications of a long-distance relationship |
Q34389118 | Noncoding RNAs and the borders of heterochromatin |
Q38284580 | Noncoding RNAs as epigenetic mediators of skeletal muscle regeneration |
Q26799919 | Noncoding RNAs, Emerging Regulators of Skeletal Muscle Development and Diseases |
Q97519235 | Novel Approaches to Profile Functional Long Noncoding RNAs Associated with Stem Cell Pluripotency |
Q27021174 | Novel RNA markers in prostate cancer: functional considerations and clinical translation |
Q47099658 | Nuclear Fractionation Reveals Thousands of Chromatin-Tethered Noncoding RNAs Adjacent to Active Genes |
Q37029720 | Nuclear Organization and Genome Function |
Q26823935 | Nuclear lncRNAs as epigenetic regulators-beyond skepticism |
Q34039391 | Nucleosome-binding activities within JARID2 and EZH1 regulate the function of PRC2 on chromatin |
Q29301233 | Occupying Chromatin: Polycomb Mechanisms for Getting to Genomic Targets, Stopping Transcriptional Traffic, and Staying Put |
Q48288187 | Oligonucleotide therapies for disorders of the nervous system |
Q33953025 | On the classification of long non-coding RNAs |
Q86600050 | Oncofetal protein IGF2BP3 facilitates the activity of proto-oncogene protein eIF4E through the destabilization of EIF4E-BP2 mRNA |
Q90577369 | Osteoclastic microRNAs and their translational potential in skeletal diseases |
Q28079474 | Oxidative stress in prostate hyperplasia and carcinogenesis |
Q90115073 | PAN RNA: transcriptional exhaust from a viral engine |
Q33996053 | PARalyzer: definition of RNA binding sites from PAR-CLIP short-read sequence data |
Q92157487 | PIRCh-seq: functional classification of non-coding RNAs associated with distinct histone modifications |
Q35674884 | PLK1 and HOTAIR Accelerate Proteasomal Degradation of SUZ12 and ZNF198 during Hepatitis B Virus-Induced Liver Carcinogenesis |
Q38841483 | PRC2 Is Required to Maintain Expression of the Maternal Gtl2-Rian-Mirg Locus by Preventing De Novo DNA Methylation in Mouse Embryonic Stem Cells |
Q37340506 | PRC2 binds active promoters and contacts nascent RNAs in embryonic stem cells. |
Q36290297 | Pancreas-specific deletion of mouse Gata4 and Gata6 causes pancreatic agenesis |
Q27000736 | Perspectives on the mechanism of transcriptional regulation by long non-coding RNAs |
Q64245000 | Pharmacological Reactivation of the Silenced Gene as a Targeted Therapeutic Approach for Fragile X Syndrome |
Q35194032 | Phosphoryl-EZH-ion. |
Q42671637 | Pinstripe: a suite of programs for integrating transcriptomic and proteomic datasets identifies novel proteins and improves differentiation of protein-coding and non-coding genes |
Q34038331 | Pint lincRNA connects the p53 pathway with epigenetic silencing by the Polycomb repressive complex 2 |
Q64326917 | Platforms for Investigating LncRNA Functions |
Q37252865 | Poly(ADP-Ribosyl)ation of hnRNP A1 Protein Controls Translational Repression in Drosophila |
Q45822809 | Poly-combing the genome for RNA. |
Q37956551 | Polycomb group complexes mediate developmental transitions in plants. |
Q37875927 | Polycomb proteins in mammalian cell differentiation and plasticity |
Q34768069 | Polycomb-mediated gene silencing in Arabidopsis thaliana |
Q38130412 | Potential Pathological and Functional Links Between Long Noncoding RNAs and Hematopoiesis |
Q38094436 | Predicting long non-coding RNAs using RNA sequencing |
Q28512630 | Pregnancy-induced noncoding RNA (PINC) associates with polycomb repressive complex 2 and regulates mammary epithelial differentiation |
Q39458571 | Probing Long Non-coding RNA-Protein Interactions. |
Q30457030 | Promiscuous RNA binding by Polycomb repressive complex 2. |
Q36450070 | Protein-RNA networks revealed through covalent RNA marks |
Q38099033 | Proteoglycans in stem cells |
Q92218442 | Proximity labeling to detect RNA-protein interactions in live cells |
Q39289526 | Quantifying RNA binding sites transcriptome-wide using DO-RIP-seq |
Q40067843 | Quantitative analysis of RNA-protein interactions on a massively parallel array reveals biophysical and evolutionary landscapes |
Q33915641 | RBFox2 Binds Nascent RNA to Globally Regulate Polycomb Complex 2 Targeting in Mammalian Genomes |
Q63408362 | RBFox2 Binds Nascent RNA to Globally Regulate Polycomb Complex 2 Targeting in Mammalian Genomes |
Q41880961 | RBPmotif: a web server for the discovery of sequence and structure preferences of RNA-binding proteins |
Q34187007 | REST-mediated recruitment of polycomb repressor complexes in mammalian cells |
Q51454029 | RIP: RNA Immunoprecipitation |
Q36783636 | RIPSeeker: a statistical package for identifying protein-associated transcripts from RIP-seq experiments |
Q37619861 | RIPiT-Seq: a high-throughput approach for footprinting RNA:protein complexes. |
Q41380855 | RNA Binding Protein Vigilin Collaborates with miRNAs To Regulate Gene Expression for Caenorhabditis elegans Larval Development |
Q37276945 | RNA helicase DEAD box protein 5 regulates Polycomb repressive complex 2/Hox transcript antisense intergenic RNA function in hepatitis B virus infection and hepatocarcinogenesis |
Q36855920 | RNA in unexpected places: long non-coding RNA functions in diverse cellular contexts |
Q59791221 | RNA interactomics: recent advances and remaining challenges |
Q97424871 | RNA is essential for PRC2 chromatin occupancy and function in human pluripotent stem cells |
Q38219007 | RNA regulatory networks in animals and plants: a long noncoding RNA perspective |
Q92154119 | RNA sequencing: the teenage years |
Q35667587 | RNA splicing control: yet another gene regulatory role for long nuclear noncoding RNAs |
Q33812473 | RNA stimulates Aurora B kinase activity during mitosis |
Q41505241 | RNA-Seq analysis of rye-grass transcriptomic response to an herbicide inhibiting acetolactate-synthase identifies transcripts linked to non-target-site-based resistance. |
Q51015153 | RNA-binding protein Rbm47 binds to Nanog in mouse embryonic stem cells |
Q27000416 | RNA-binding proteins in neurodegeneration: Seq and you shall receive |
Q34788864 | RNA-binding proteins in pluripotency, differentiation, and reprogramming. |
Q35223649 | RNA-mediated epigenetic regulation of gene expression |
Q30412651 | RNA-sequencing from single nuclei |
Q91985798 | RNA: interactions drive functionalities |
Q92448297 | RNAInter in 2020: RNA interactome repository with increased coverage and annotation |
Q91942260 | RNAi-dependent Polycomb repression controls transposable elements in Tetrahymena |
Q33677541 | RPI-Bind: a structure-based method for accurate identification of RNA-protein binding sites. |
Q87422381 | RaNA Therapeutics |
Q45989856 | Re-evaluating the foundations of lncRNA-Polycomb function. |
Q38209316 | Recent advances in the involvement of long non-coding RNAs in neural stem cell biology and brain pathophysiology |
Q36042317 | Recruiting polycomb to chromatin |
Q33649662 | Regulation of Mammalian Gene Dosage by Long Noncoding RNAs |
Q37158599 | Regulation of chromatin structure by long noncoding RNAs: focus on natural antisense transcripts |
Q91292216 | Regulation of gene expression by cis-acting long non-coding RNAs |
Q38668767 | Regulation of gene transcription by Polycomb proteins |
Q36382068 | Regulation of mammalian cell differentiation by long non‐coding RNAs |
Q27011533 | Regulation of mammary epithelial cell homeostasis by lncRNAs |
Q34846003 | Regulation of transcription by long noncoding RNAs |
Q64117499 | Regulatory Network of Two Tumor-Suppressive Noncoding RNAs Interferes with the Growth and Metastasis of Renal Cell Carcinoma |
Q38161732 | Regulatory Roles for Long ncRNA and mRNA |
Q39167100 | Regulatory feedback from nascent RNA to chromatin and transcription |
Q33938354 | Regulatory interactions between RNA and polycomb repressive complex 2. |
Q28075832 | Regulatory links between imprinted genes: evolutionary predictions and consequences |
Q83996623 | Regulatory long non-coding RNA and its functions |
Q35675960 | Repeat-mediated epigenetic dysregulation of the FMR1 gene in the fragile X-related disorders |
Q38023496 | Reprogramming chromatin |
Q92382800 | Research progress on the interactions between long non-coding RNAs and microRNAs in human cancer |
Q36820981 | Resources for the Comprehensive Discovery of Functional RNA Elements |
Q38515219 | Revealing protein-lncRNA interaction |
Q38087206 | Rise of the RNA Machines: Exploring the Structure of Long Non-Coding RNAs |
Q46236214 | Role of Non-Coding RNAs in the Etiology of Bladder Cancer. |
Q37083714 | Role of Polycomb Proteins in Regulating HSV-1 Latency |
Q92671574 | Role of lncRNAs in aging and age-related diseases |
Q38136969 | Role of long non-coding RNAs in normal and malignant hematopoiesis |
Q38951145 | Role of long non-coding RNAs in the determination of β-cell identity |
Q38113616 | Roles of long noncoding RNAs in brain development, functional diversification and neurodegenerative diseases |
Q26765422 | Roles, Functions, and Mechanisms of Long Non-coding RNAs in Cancer |
Q37615671 | SET for life: biochemical activities and biological functions of SET domain-containing proteins |
Q55518787 | SMARTIV: combined sequence and structure de-novo motif discovery for in-vivo RNA binding data. |
Q28298055 | SON connects the splicing-regulatory network with pluripotency in human embryonic stem cells |
Q39111162 | Screening for possible miRNA–mRNA associations in a colon cancer cell line |
Q34924833 | Single-cell transcriptome analysis reveals dynamic changes in lncRNA expression during reprogramming |
Q37472994 | Single-nucleus RNA-seq of differentiating human myoblasts reveals the extent of fate heterogeneity |
Q36480547 | Sizing up long non-coding RNAs: Do lncRNAs have secondary and tertiary structure? |
Q36344979 | SnoVault and encodeD: A novel object-based storage system and applications to ENCODE metadata |
Q35842489 | Splicing of a non-coding antisense transcript controls LEF1 gene expression |
Q26770507 | Stem Cell Ribonomics: RNA-Binding Proteins and Gene Networks in Stem Cell Differentiation |
Q36402318 | Strategies to identify long noncoding RNAs involved in gene regulation |
Q39245946 | Structure of the PRC2 complex and application to drug discovery. |
Q36112929 | Studying the affinity, kinetic stability, and specificity of RNA/protein interactions: SINE ncRNA/Pol II complexes as a model system |
Q42272234 | Subset of Suz12/PRC2 target genes is activated during hepatitis B virus replication and liver carcinogenesis associated with HBV X protein |
Q34005355 | Sweet memories: epigenetic control in flowering |
Q34000367 | Synergistic chromatin repression of the tumor suppressor gene RARB in human prostate cancers |
Q34223399 | Synthetic antibodies as tools to probe RNA-binding protein function |
Q35791594 | Systematic identification of long noncoding RNAs expressed during zebrafish embryogenesis |
Q34473204 | Systematic reconstruction of RNA functional motifs with high-throughput microfluidics |
Q92286693 | TET1 regulates fibroblast growth factor 8 transcription in gonadotropin releasing hormone neurons |
Q35058883 | Tackling structures of long noncoding RNAs |
Q33684748 | Targeted disruption of Hotair leads to homeotic transformation and gene derepression |
Q35236465 | Targeting histone methyltransferase EZH2 as cancer treatment |
Q38113050 | Targeting long non-coding RNAs in cancers: Progress and prospects |
Q30460737 | Targeting of Polycomb Repressive Complex 2 to RNA by Short Repeats of Consecutive Guanines |
Q51132821 | Tethering RNA to chromatin for fluorescence microscopy based analysis of nuclear organization |
Q33627977 | The Activity-Induced Long Non-Coding RNA Meg3 Modulates AMPA Receptor Surface Expression in Primary Cortical Neurons. |
Q92072845 | The Airn lncRNA does not require any DNA elements within its locus to silence distant imprinted genes |
Q33870522 | The DNA damage response: the omics era and its impact |
Q57161236 | The Dysregulation of the - Locus in Islets From Patients With Type 2 Diabetes Is Mimicked by Targeted Epimutation of Its Promoter With TALE-DNMT Constructs |
Q28086829 | The Landscape of long noncoding RNA classification |
Q35684591 | The Medicago sativa gene index 1.2: a web-accessible gene expression atlas for investigating expression differences between Medicago sativa subspecies |
Q33828371 | The Missing lnc(RNA) between the pancreatic β-cell and diabetes |
Q42325826 | The PRC2-binding long non-coding RNAs in human and mouse genomes are associated with predictive sequence features |
Q27973158 | The PfAlba1 RNA-binding protein is an important regulator of translational timing in Plasmodium falciparum blood stages |
Q47642423 | The RNA-Binding Protein NONO Coordinates Hepatic Adaptation to Feeding. |
Q30586611 | The Tissue-Specific lncRNA Fendrr Is an Essential Regulator of Heart and Body Wall Development in the Mouse |
Q38915010 | The bright side of dark matter: lncRNAs in cancer |
Q37873983 | The central role of RNA in human development and cognition |
Q33661903 | The centrality of RNA for engineering gene expression |
Q36800576 | The cohesin-associated protein Wapal is required for proper Polycomb-mediated gene silencing |
Q35867154 | The context of gene expression regulation |
Q38685415 | The contribution of the C5 protein subunit of Escherichia coli ribonuclease P to specificity for precursor tRNA is modulated by proximal 5' leader sequences |
Q38260253 | The controversial role of the Polycomb group proteins in transcription and cancer: how much do we not understand Polycomb proteins? |
Q38239897 | The decalog of long non-coding RNA involvement in cancer diagnosis and monitoring. |
Q42006313 | The expression analysis of silk gland-enriched intermediate-size non-coding RNAs in silkworm Bombyx mori |
Q34995156 | The functional role of long non-coding RNA in human carcinomas |
Q46920734 | The functions and unique features of long intergenic non-coding RNA. |
Q36391951 | The hallmarks of cancer: a long non-coding RNA point of view. |
Q34617202 | The importance of study design for detecting differentially abundant features in high-throughput experiments. |
Q42278258 | The interaction of PRC2 with RNA or chromatin is mutually antagonistic |
Q31129939 | The intronic long noncoding RNA ANRASSF1 recruits PRC2 to the RASSF1A promoter, reducing the expression of RASSF1A and increasing cell proliferation. |
Q61799116 | The lncRNA BDNF-AS is an epigenetic regulator in the human amygdala in early onset alcohol use disorders |
Q42122873 | The long non-coding RNA Fendrr links epigenetic control mechanisms to gene regulatory networks in mammalian embryogenesis. |
Q52319773 | The long non-coding RNA Paupar promotes KAP1-dependent chromatin changes and regulates olfactory bulb neurogenesis |
Q38710234 | The long non-coding RNA Paupar regulates the expression of both local and distal genes |
Q38045210 | The long non-coding RNAs, a new cancer diagnostic and therapeutic gold mine |
Q36775463 | The long noncoding RNA Gm15055 represses Hoxa gene expression by recruiting PRC2 to the gene cluster |
Q21203074 | The long noncoding RNA Six3OS acts in trans to regulate retinal development by modulating Six3 activity |
Q89638297 | The multifaceted roles of long noncoding RNAs in pancreatic cancer: an update on what we know |
Q26851952 | The noncoding RNA revolution-trashing old rules to forge new ones |
Q30459862 | The recruitment of chromatin modifiers by long noncoding RNAs: lessons from PRC2. |
Q38365167 | The relationship between transcription initiation RNAs and CCCTC-binding factor (CTCF) localization |
Q26997073 | The research strategies for probing the function of long noncoding RNAs |
Q39010263 | The retrovirus HERVH is a long noncoding RNA required for human embryonic stem cell identity |
Q34079400 | The role of long non-coding RNAs in neurodevelopment, brain function and neurological disease |
Q64096957 | The role of long non-coding RNAs in the pathogenesis of hereditary diseases |
Q38116919 | The role of noncoding RNAs in chromatin regulation during differentiation |
Q38264796 | The roles and regulation of Polycomb complexes in neural development |
Q37883988 | The time of timing: How Polycomb proteins regulate neurogenesis |
Q37878048 | To repress or not to repress: This is the guardian's question |
Q30459421 | Toward a consensus on the binding specificity and promiscuity of PRC2 for RNA. |
Q103028179 | Trans- and cis-acting effects of Firre on epigenetic features of the inactive X chromosome |
Q38149730 | Transcriptional regulation by Polycomb group proteins |
Q37850681 | Transcriptional regulation of cellular senescence |
Q33970112 | Transcriptional regulatory functions of nuclear long noncoding RNAs |
Q35548948 | Transcriptional silencing by polycomb-group proteins |
Q35617354 | Transcriptomic analysis of pluripotent stem cells: insights into health and disease |
Q40027583 | Transgenerational programming of longevity through E(z)-mediated histone H3K27 trimethylation in Drosophila |
Q34699808 | Transposable elements are major contributors to the origin, diversification, and regulation of vertebrate long noncoding RNAs |
Q35867912 | Twist-1 induces Ezh2 recruitment regulating histone methylation along the Ink4A/Arf locus in mesenchymal stem cells. |
Q34031710 | Uncovering the role of genomic "dark matter" in human disease |
Q91808764 | Understanding Long Noncoding RNA and Chromatin Interactions: What We Know So Far |
Q26747692 | Understanding the Functions of Long Non-Coding RNAs through Their Higher-Order Structures |
Q48151341 | Understanding the Role of lncRNAs in Nervous System Development |
Q37919342 | Understanding the transcriptome through RNA structure |
Q26779139 | Unveiling the hidden function of long non-coding RNA by identifying its major partner-protein |
Q37149839 | Upregulation of Haploinsufficient Gene Expression in the Brain by Targeting a Long Non-coding RNA Improves Seizure Phenotype in a Model of Dravet Syndrome |
Q47116187 | Upregulation of long noncoding RNA Xist promotes proliferation of osteosarcoma by epigenetic silencing of P21. |
Q51163996 | Vernalization-Triggered Intragenic Chromatin Loop Formation by Long Noncoding RNAs |
Q35470460 | Vision from next generation sequencing: multi-dimensional genome-wide analysis for producing gene regulatory networks underlying retinal development, aging and disease |
Q36587843 | Widespread RNA binding by chromatin-associated proteins |
Q38090112 | X-Inactivation, Imprinting, and Long Noncoding RNAs in Health and Disease |
Q35738090 | Xist Exon 7 Contributes to the Stable Localization of Xist RNA on the Inactive X-Chromosome. |
Q24311256 | YY1 tethers Xist RNA to the inactive X nucleation center |
Q64962986 | beRBP: binding estimation for human RNA-binding proteins. |
Q34969922 | catRAPID omics: a web server for large-scale prediction of protein-RNA interactions |
Q38615610 | cncRNAs: Bi-functional RNAs with protein coding and non-coding functions |
Q33742972 | dCLIP: a computational approach for comparative CLIP-seq analyses |
Q38348854 | lincRNA HOTAIR as a novel promoter of cancer progression. |
Q37584905 | lincRNAs: genomics, evolution, and mechanisms |
Q33666551 | lncRNA-dependent mechanisms of androgen-receptor-regulated gene activation programs. |
Q27023629 | lncRNAs: linking RNA to chromatin |
Q93010867 | lncRedibly versatile: biochemical and biological functions of long noncoding RNAs |
Q57470836 | locus-derived LncRNAs perpetuate postmitotic motor neuron cell fate and subtype identity |
Q35965049 | miR-410 and miR-495 Are Dynamically Regulated in Diverse Cardiomyopathies and Their Inhibition Attenuates Pathological Hypertrophy |
Q35266933 | nRIP-seq: a technique to identify RNA targets of an RNA binding protein on a genome-wide scale |
Q33597157 | p50-associated COX-2 extragenic RNA (PACER) activates COX-2 gene expression by occluding repressive NF-κB complexes |
Q35709920 | p53-Dependent induction of PVT1 and miR-1204. |
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