scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1023503429 |
P356 | DOI | 10.1186/1471-2164-10-8 |
P8608 | Fatcat ID | release_n2whbn5tkzaybmpbbx45v4ivki |
P932 | PMC publication ID | 2630312 |
P698 | PubMed publication ID | 19128492 |
P5875 | ResearchGate publication ID | 23763326 |
P50 | author | David M McGaughey | Q58515863 |
P2093 | author name string | Andrew S McCallion | |
Jimmy L Huynh | |||
Zachary E Stine | |||
Ryan M Vinton | |||
P2860 | cites work | Identification and analysis of functional elements in 1% of the human genome by the ENCODE pilot project | Q21061203 |
Highly conserved non-coding sequences are associated with vertebrate development | Q21092819 | ||
Ultraconserved Elements in the Human Genome | Q22065813 | ||
Gene ontology: tool for the unification of biology | Q23781406 | ||
Polyalanine expansion and frameshift mutations of the paired-like homeobox gene PHOX2B in congenital central hypoventilation syndrome | Q24297880 | ||
Evolutionarily conserved elements in vertebrate, insect, worm, and yeast genomes | Q24534193 | ||
Ultraconservation identifies a small subset of extremely constrained developmental enhancers | Q24648269 | ||
The human genome browser at UCSC | Q24672361 | ||
FAIRE (Formaldehyde-Assisted Isolation of Regulatory Elements) isolates active regulatory elements from human chromatin | Q24673476 | ||
Evaluation of the RET regulatory landscape reveals the biological relevance of a HSCR-implicated enhancer | Q50748616 | ||
Morphological evolution through multiple cis-regulatory mutations at a single gene. | Q51705502 | ||
PMX2B, a new candidate gene for Hirschsprung's disease. | Q52101653 | ||
A conserved retinoic acid response element required for early expression of the homeobox gene Hoxb-1. | Q52215015 | ||
Evaluating the biological relevance of putative enhancers using Tol2 transposon-mediated transgenesis in zebrafish | Q80093166 | ||
Conservation of RET regulatory function from human to zebrafish without sequence similarity | Q82927855 | ||
NCBI reference sequences (RefSeq): a curated non-redundant sequence database of genomes, transcripts and proteins | Q24676525 | ||
Regulatory divergence modifies limb length between mammals | Q24677153 | ||
Evidence for widespread degradation of gene control regions in hominid genomes | Q24804367 | ||
Stages of embryonic development of the zebrafish | Q27860947 | ||
A long-range Shh enhancer regulates expression in the developing limb and fin and is associated with preaxial polydactyly | Q28184095 | ||
Scanning Human Gene Deserts for Long-Range Enhancers | Q28210571 | ||
Using galaxy to perform large-scale interactive data analyses | Q28277397 | ||
A framework for collaborative analysis of ENCODE data: making large-scale analyses biologist-friendly | Q28306159 | ||
The homeobox gene Phox2b is essential for the development of autonomic neural crest derivatives | Q28505510 | ||
Expression and interactions of the two closely related homeobox genes Phox2a and Phox2b during neurogenesis | Q28594072 | ||
28-way vertebrate alignment and conservation track in the UCSC Genome Browser | Q28756596 | ||
Aligning multiple genomic sequences with the threaded blockset aligner | Q29547490 | ||
In vivo enhancer analysis of human conserved non-coding sequences | Q29616554 | ||
Genetic and developmental basis of evolutionary pelvic reduction in threespine sticklebacks | Q29618476 | ||
Gene regulatory networks and the evolution of animal body plans | Q29618587 | ||
OBO-Edit--an ontology editor for biologists | Q33286500 | ||
Finding cis-regulatory elements using comparative genomics: some lessons from ENCODE data | Q33287630 | ||
Definition of the zebrafish genome using flow cytometry and cytogenetic mapping. | Q33289140 | ||
Evolution and functional classification of vertebrate gene deserts | Q33596085 | ||
Genomic deletion of a long-range bone enhancer misregulates sclerostin in Van Buchem disease | Q33891844 | ||
Germline mutations of the paired-like homeobox 2B (PHOX2B) gene in neuroblastoma | Q33909753 | ||
A common sex-dependent mutation in a RET enhancer underlies Hirschsprung disease risk. | Q34411392 | ||
Detecting conserved regulatory elements with the model genome of the Japanese puffer fish, Fugu rubripes | Q34646248 | ||
Close sequence comparisons are sufficient to identify human cis-regulatory elements. | Q34703070 | ||
Genome-wide prediction of conserved and nonconserved enhancers by histone acetylation patterns | Q35251281 | ||
Predicting tissue-specific enhancers in the human genome | Q35608683 | ||
Comparative genomic analysis as a tool for biological discovery | Q35608966 | ||
Comparative genomics at the vertebrate extremes | Q35778678 | ||
Analyses of deep mammalian sequence alignments and constraint predictions for 1% of the human genome | Q35840707 | ||
Statistical analysis of the genomic distribution and correlation of regulatory elements in the ENCODE regions | Q35840712 | ||
Genomic regulatory networks and animal development | Q36273945 | ||
Identification of active transcriptional regulatory modules by the functional assay of DNA from nucleosome-free regions | Q36700193 | ||
Ultraconserved non-coding sequence element controls a subset of spatiotemporal GLI3 expression | Q40100963 | ||
Shuffling of cis-regulatory elements is a pervasive feature of the vertebrate lineage | Q41852340 | ||
Genome-wide computational prediction of transcriptional regulatory modules reveals new insights into human gene expression | Q41995414 | ||
Metrics of sequence constraint overlook regulatory sequences in an exhaustive analysis at phox2b | Q42239743 | ||
The apolipoprotein(a) gene is regulated by sex hormones and acute-phase inducers in YAC transgenic mice. | Q46431843 | ||
Phox2b function in the enteric nervous system is conserved in zebrafish and is sox10-dependent | Q47074130 | ||
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 8 | |
P577 | publication date | 2009-01-01 | |
P1433 | published in | BMC Genomics | Q15765854 |
P1476 | title | Asymmetrical distribution of non-conserved regulatory sequences at PHOX2B is reflected at the ENCODE loci and illuminates a possible genome-wide trend | |
P478 | volume | 10 |
Q35683593 | A Phox2b BAC Transgenic Rat Line Useful for Understanding Respiratory Rhythm Generator Neural Circuitry |
Q35766367 | A single nucleotide polymorphism associated with isolated cleft lip and palate, thyroid cancer and hypothyroidism alters the activity of an oral epithelium and thyroid enhancer near FOXE1 |
Q34114376 | Ancient Pbx-Hox signatures define hundreds of vertebrate developmental enhancers |
Q41877467 | Characterization and regulation of the hb9/mnx1 beta-cell progenitor specific enhancer in zebrafish |
Q35781835 | Current concepts of follicle-stimulating hormone receptor gene regulation |
Q37822860 | Disruption of long-distance highly conserved noncoding elements in neurocristopathies |
Q41853747 | Efficient discovery of ASCL1 regulatory sequences through transgene pooling |
Q26745493 | Enteric nervous system development in avian and zebrafish models |
Q61207268 | Evolution of a tissue-specific silencer underlies divergence in the expression of pax2 and pax8 paralogues |
Q33523952 | Genome-wide discovery of human heart enhancers |
Q48248078 | Gut feelings: Studying enteric nervous system development, function, and disease in the zebrafish model system |
Q37430025 | Heterogeneous tempo and mode of conserved noncoding sequence evolution among four mammalian orders |
Q33549139 | Homotypic clusters of transcription factor binding sites are a key component of human promoters and enhancers |
Q47074209 | In vivo visualization of the development of the enteric nervous system using a Tg(-8.3bphox2b:Kaede) transgenic zebrafish |
Q41919357 | Interferon regulatory factor 6 promotes differentiation of the periderm by activating expression of Grainyhead-like 3. |
Q28538459 | Mammalian TBX1 preferentially binds and regulates downstream targets via a tandem T-site repeat |
Q35200153 | Steroid hormone modulation of RET through two estrogen responsive enhancers in breast cancer |
Q38570600 | Toward understanding the evolution of vertebrate gene regulatory networks: comparative genomics and epigenomic approaches |
Search more.