Cooperativity and Rapid Evolution of Cobound Transcription Factors in Closely Related Mammals
Klara Stefflova,David Thybert,Michael D. Wilson,Ian Streeter,Jelena Aleksic,Panagiota Karagianni,Alvis Brazma,David J. Adams,Iannis Talianidis,John C. Marioni,Paul Flicek,Paul Flicek,Duncan T. Odom,Duncan T. Odom +13 more
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TLDR
The large, qualitative differences in genomic regions bound between closely related mammals, when contrasted with the smaller, quantitative TF binding differences among Drosophila species, illustrate how genome structure and population genetics together shape regulatory evolution.About:
This article is published in Cell.The article was published on 2013-08-01 and is currently open access. It has received 167 citations till now. The article focuses on the topics: Cooperativity.read more
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A comparative encyclopedia of DNA elements in the mouse genome
Feng Yue,Feng Yue,Yong Cheng,Alessandra Breschi,Jeff Vierstra,Weisheng Wu,Weisheng Wu,Tyrone Ryba,Tyrone Ryba,Richard Sandstrom,Zhihai Ma,Carrie A. Davis,Benjamin D. Pope,Yin Shen,Dmitri D. Pervouchine,Sarah Djebali,Robert E. Thurman,Rajinder Kaul,Eric Rynes,Anthony Kirilusha,Georgi K. Marinov,Brian A. Williams,Diane Trout,Henry Amrhein,Katherine I. Fisher-Aylor,Igor Antoshechkin,Gilberto DeSalvo,Lei Hoon See,Meagan Fastuca,Jorg Drenkow,Chris Zaleski,Alexander Dobin,Pablo Prieto,Julien Lagarde,Giovanni Bussotti,Andrea Tanzer,Olgert Denas,Kanwei Li,M. A. Bender,M. A. Bender,Miaohua Zhang,Rachel Byron,Mark Groudine,Mark Groudine,David McCleary,Long Pham,Zhen Ye,Samantha Kuan,Lee Edsall,Yi-Chieh Wu,Matthew D. Rasmussen,Mukul S. Bansal,Manolis Kellis,Manolis Kellis,Cheryl A. Keller,Christapher S. Morrissey,Tejaswini Mishra,Deepti Jain,Nergiz Dogan,Robert S. Harris,Philip Cayting,Trupti Kawli,Alan P. Boyle,Alan P. Boyle,Ghia Euskirchen,Anshul Kundaje,Shin Lin,Yiing Lin,Camden Jansen,Venkat S. Malladi,Melissa S. Cline,Drew T. Erickson,Vanessa M. Kirkup,Katrina Learned,Cricket A. Sloan,Kate R. Rosenbloom,Beatriz Lacerda de Sousa,Kathryn Beal,Miguel Pignatelli,Paul Flicek,Jin Lian,Tamer Kahveci,Dongwon Lee,W. James Kent,Miguel Santos,Javier Herrero,Cedric Notredame,Audra K. Johnson,Shinny Vong,Kristen Lee,Daniel Bates,Fidencio Neri,Morgan Diegel,Theresa K. Canfield,Peter J. Sabo,Matthew S. Wilken,Thomas A. Reh,Erika Giste,Anthony Shafer,Tanya Kutyavin,Eric Haugen,Douglas Dunn,Alex Reynolds,Shane Neph,Richard Humbert,R. Scott Hansen,Marella F. T. R. de Bruijn,Licia Selleri,Alexander Y. Rudensky,Steven Z. Josefowicz,Robert M. Samstein,Evan E. Eichler,Stuart H. Orkin,Dana N. Levasseur,Thalia Papayannopoulou,Kai Hsin Chang,Arthur I. Skoultchi,Srikanta Gosh,Christine M. Disteche,Piper M. Treuting,Yanli Wang,Mitchell J. Weiss,Gerd A. Blobel,Xiaoyi Cao,Sheng Zhong,Ting Wang,Peter J. Good,Rebecca F. Lowdon,Rebecca F. Lowdon,Leslie B. Adams,Leslie B. Adams,Xiao Qiao Zhou,Michael J. Pazin,Elise A. Feingold,Barbara J. Wold,James Taylor,Ali Mortazavi,Sherman M. Weissman,John A. Stamatoyannopoulos,Michael Snyder,Roderic Guigó,Thomas R. Gingeras,David M. Gilbert,Ross C. Hardison,Michael A. Beer,Bing Ren +145 more
TL;DR: The mouse ENCODE Consortium has mapped transcription, DNase I hypersensitivity, transcription factor binding, chromatin modifications and replication domains throughout the mouse genome in diverse cell and tissue types as mentioned in this paper.
A comparative encyclopedia of DNA elements in the mouse genome - eScholarship
Miguel Ramalho-Santos,Yin Shen,Sheng Zhong,Licia Selleri,F Yue,Y Cheng,A Breschi,Jeff Vierstra,W Wu,T Ryba,Richard Sandstrom,Z Ma,C Davis,BD Pope +13 more
TL;DR: The laboratory mouse shares the majority of its protein-coding genes with humans, making it the premier model organism in biomedical research, yet the two mammals differ in significant ways.
Journal Article
A High-Resolution Map of Human Evolutionary Constraint Using 29 Mammals
Stefan Washietl,Pouya Kheradpour,Jason Ernst,Lucas D. Ward,Irwin Jungreis,Matthew D. Rasmussen,Manolis Kellis +6 more
TL;DR: The comparison of related genomes has emerged as a powerful lens for genome interpretation as mentioned in this paper, which reveals a small number of new coding exons, candidate stop codon readthrough events and over 10,000 regions of overlapping synonymous constraint within protein-coding exons.
Journal ArticleDOI
The selection and function of cell type-specific enhancers
TL;DR: The human body contains several hundred cell types, all of which share the same genome, and much of the regulatory code that drives cell type-specific gene expression is located in distal elements called enhancers, which influences the functions of enhancers and super-enhancers.
Journal ArticleDOI
Enhancer Evolution across 20 Mammalian Species
Diego Villar,Camille Berthelot,Sarah Aldridge,Tim F. Rayner,Margus Lukk,Miguel Pignatelli,Thomas J. Park,Robert Deaville,Jonathan T. Erichsen,Anna J. Jasinska,James M. A. Turner,Mads F. Bertelsen,Elizabeth P. Murchison,Paul Flicek,Paul Flicek,Duncan T. Odom,Duncan T. Odom +16 more
TL;DR: It is reported that rapid evolution of enhancers is a universal feature of mammalian genomes and most of the recently evolved enhancers arise from ancestral DNA exaptation, rather than lineage-specific expansions of repeat elements.
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An integrated encyclopedia of DNA elements in the human genome.
TL;DR: The Encyclopedia of DNA Elements project provides new insights into the organization and regulation of the authors' genes and genome, and is an expansive resource of functional annotations for biomedical research.
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TL;DR: The results of an international collaboration to produce a high-quality draft sequence of the mouse genome are reported and an initial comparative analysis of the Mouse and human genomes is presented, describing some of the insights that can be gleaned from the two sequences.
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