review article | Q7318358 |
scholarly article | Q13442814 |
P50 | author | Ewa Grzybowska | Q64516065 |
Alicja Trebinska | Q84008403 | ||
Maciej Wakula | Q90904096 | ||
P2093 | author name string | Ryszard Konopinski | |
Anna Balcerak | |||
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Protein complexes assemble as they are being made | Q59096581 | ||
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HuR recruits let-7/RISC to repress c-Myc expression | Q24657731 | ||
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The testis-specific human protein RBMY recognizes RNA through a novel mode of interaction | Q24682561 | ||
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RNA in the loop | Q42636705 | ||
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A creature with a hundred waggly tails: intrinsically disordered proteins in the ribosome | Q46337513 | ||
Analysis of ordered and disordered protein complexes reveals structural features discriminating between stable and unstable monomers | Q47609385 | ||
Local Nucleation of Microtubule Bundles through Tubulin Concentration into a Condensed Tau Phase | Q47848083 | ||
A brave new world of RNA-binding proteins. | Q50018567 | ||
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The new (dis)order in RNA regulation | Q26751488 | ||
The sweet side of RNA regulation: glyceraldehyde-3-phosphate dehydrogenase as a noncanonical RNA-binding protein | Q26777271 | ||
Metabolic Enzymes Enjoying New Partnerships as RNA-Binding Proteins | Q26777647 | ||
Competing Interactions of RNA-Binding Proteins, MicroRNAs, and Their Targets Control Neuronal Development and Function | Q26777985 | ||
High-throughput characterization of protein-RNA interactions | Q27013905 | ||
CRAC: an integrated approach to the analysis of RNA-seq reads | Q27499736 | ||
Structure-function studies of FMRP RGG peptide recognition of an RNA duplex-quadruplex junction | Q27666251 | ||
The Arginine-Rich RNA-Binding Motif of HIV-1 Rev Is Intrinsically Disordered and Folds upon RRE Binding | Q27679793 | ||
Involvement of microRNA in AU-rich element-mediated mRNA instability | Q28118466 | ||
Zinc finger proteins: getting a grip on RNA | Q28235674 | ||
The family of iron responsive RNA structures regulated by changes in cellular iron and oxygen | Q28248252 | ||
Analysis of molecular recognition features (MoRFs) | Q28260253 | ||
Iron regulates cytoplasmic levels of a novel iron-responsive element-binding protein without aconitase activity | Q28286839 | ||
The diverse functions of GAPDH: views from different subcellular compartments | Q28291106 | ||
Identification of a signature motif in target mRNAs of RNA-binding protein AUF1 | Q28301813 | ||
Phase separation by low complexity domains promotes stress granule assembly and drives pathological fibrillization | Q28588090 | ||
Induced folding in RNA recognition by Arabidopsis thaliana DCL1 | Q28646551 | ||
A decade and a half of protein intrinsic disorder: biology still waits for physics | Q28681184 | ||
AU-rich elements: characterization and importance in mRNA degradation | Q29547896 | ||
RNA-guided genetic silencing systems in bacteria and archaea | Q29614421 | ||
Cell-free formation of RNA granules: low complexity sequence domains form dynamic fibers within hydrogels | Q29614781 | ||
RNA recognition motifs: boring? Not quite | Q29615153 | ||
HuR and mRNA stability | Q29615185 | ||
Molecular mechanisms of long noncoding RNAs | Q29618027 | ||
The cap-to-tail guide to mRNA turnover | Q29619835 | ||
Advantages of proteins being disordered. | Q30358999 | ||
Fuzzy complexes: a more stochastic view of protein function | Q30414023 | ||
The recruitment of chromatin modifiers by long noncoding RNAs: lessons from PRC2. | Q30459862 | ||
Specific interaction between the self-splicing RNA of Tetrahymena and its guanosine substrate: implications for biological catalysis by RNA. | Q30463535 | ||
Simple sequences are rare in the Protein Data Bank | Q30692839 | ||
Constitutive patterns of gene expression regulated by RNA-binding proteins | Q33745315 | ||
LncRNA MEG3 downregulation mediated by DNMT3b contributes to nickel malignant transformation of human bronchial epithelial cells via modulating PHLPP1 transcription and HIF-1α translation | Q33926034 | ||
Human intronless genes: functional groups, associated diseases, evolution, and mRNA processing in absence of splicing. | Q34032521 | ||
The REM phase of gene regulation | Q34121162 | ||
SVM based prediction of RNA-binding proteins using binding residues and evolutionary information. | Q34129101 | ||
Attributes of short linear motifs. | Q34215453 | ||
Activating RNAs associate with Mediator to enhance chromatin architecture and transcription | Q34328232 | ||
Intrinsic disorder in the human spliceosomal proteome | Q34388431 | ||
Regulatory functions of 3'UTRs. | Q34404957 | ||
Linear motifs: evolutionary interaction switches. | Q34424868 | ||
MoRFchibi SYSTEM: software tools for the identification of MoRFs in protein sequences | Q34526381 | ||
Structure and function of KH domains | Q34771420 | ||
Integrative regulatory mapping indicates that the RNA-binding protein HuR couples pre-mRNA processing and mRNA stability | Q35562869 | ||
Functional Advantages of Conserved Intrinsic Disorder in RNA-Binding Proteins | Q35800480 | ||
Dissecting the expression relationships between RNA-binding proteins and their cognate targets in eukaryotic post-transcriptional regulatory networks | Q36012895 | ||
RS domains contact the pre-mRNA throughout spliceosome assembly | Q36064219 | ||
Formation and Maturation of Phase-Separated Liquid Droplets by RNA-Binding Proteins | Q36172705 | ||
Functions of double-stranded RNA-binding domains in nucleocytoplasmic transport | Q36191232 | ||
ALS/FTD Mutation-Induced Phase Transition of FUS Liquid Droplets and Reversible Hydrogels into Irreversible Hydrogels Impairs RNP Granule Function | Q36320469 | ||
Metabolic enzymes that bind RNA: yet another level of cellular regulatory network? | Q36367438 | ||
The functional duality of iron regulatory protein 1. | Q36642736 | ||
An inducible long noncoding RNA amplifies DNA damage signaling. | Q37372449 | ||
DNMT1-interacting RNAs block gene-specific DNA methylation | Q37408576 | ||
How common are extraribosomal functions of ribosomal proteins? | Q37442012 | ||
The role of the 3' untranslated region in post-transcriptional regulation of protein expression in mammalian cells | Q38012032 | ||
Structure of PTB bound to RNA: specific binding and implications for splicing regulation | Q38320705 | ||
Emerging Roles of Disordered Sequences in RNA-Binding Proteins | Q38611157 | ||
Advances and challenges in the detection of transcriptome-wide protein-RNA interactions. | Q38635719 | ||
mRNA interactome capture in mammalian cells | Q38678309 | ||
The RNA-binding proteomes from yeast to man harbour conserved enigmRBPs | Q38814679 | ||
Steroid receptor RNA activator: Biologic function and role in disease | Q38860569 | ||
catRAPID signature: identification of ribonucleoproteins and RNA-binding regions | Q39093741 | ||
Quantifying RNA binding sites transcriptome-wide using DO-RIP-seq | Q39289526 | ||
AU-rich-element-mediated upregulation of translation by FXR1 and Argonaute 2. | Q40154871 | ||
Intrinsically disordered RGG/RG domains mediate degenerate specificity in RNA binding. | Q41511289 | ||
Aromatic side-chain conformational switch on the surface of the RNA Recognition Motif enables RNA discrimination | Q41693751 | ||
Extreme multifunctional proteins identified from a human protein interaction network. | Q41945151 | ||
Promiscuous interactions and protein disaggregases determine the material state of stress-inducible RNP granules | Q42208957 | ||
The interaction of PRC2 with RNA or chromatin is mutually antagonistic | Q42278258 | ||
It's Raining Liquids: RNA Tunes Viscoelasticity and Dynamics of Membraneless Organelles | Q42287627 | ||
Handshakes and Fights: The Regulatory Interplay of RNA-Binding Proteins. | Q42369779 | ||
SONAR Discovers RNA-Binding Proteins from Analysis of Large-Scale Protein-Protein Interactomes | Q42380945 | ||
Transcriptome-wide analysis of exosome targets | Q42421964 | ||
P433 | issue | 6 | |
P304 | page(s) | 190096 | |
P577 | publication date | 2019-06-19 | |
P1433 | published in | Open Biology | Q7095958 |
P1476 | title | RNA-protein interactions: disorder, moonlighting and junk contribute to eukaryotic complexity | |
P478 | volume | 9 |
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