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A comparative encyclopedia of DNA elements in the mouse genome

Authors
Feng Yue,Yong Cheng
Alessandra Breschi,Jeff Vierstra,Weisheng Wu,Tyrone Ryba,Richard Sandstrom,Zhihai Ma,Carrie Davis,Benjamin Pope,Yin Shen,Dmitri Pervouchine,Sarah Djebali,Robert Thurman,Rajinder Kaul,Eric Rynes,Anthony Kirilusha,Georgi Marinov,Brian Williams,Diane Trout,Henry Amrhein,Katherine Fisher-Aylor,Igor Antoshechkin,Gilberto DeSalvo,Lei See,Meagan Fastuca,Jörg Drenkow,Chris Zaleski,Alexander Dobin,Pablo Prieto,Julien Lagarde,Giovanni Bussotti,Andrea Tanzer,Olgert Denas,Kanwei Li,Michael Bender,Miaohua Zhang,Rachel Byron,Mark Groudine,David McCleary,Long Pham,Zhen Ye,Samantha Kuan,Lee Edsall,Yi Wu,Matthew Rasmussen,Mukul Bansal,M Kellis,Cheryl Keller,Christapher Morrissey,Tejaswini Mishra,Deepti Jain,Nergiz Dogan,Robert Harris,Philip Cayting,Trupti Kawli,Alan Boyle,Ghia Euskirchen,Anshul Kundaje,Shin Lin,Yiing Lin,Camden Jansen,Venkat Malladi,Melissa Cline,Drew Erickson,Vanessa Kirkup,Katrina Learned,Cricket Sloan,Kate Rosenbloom,Beatriz Sousa,Kathryn Beal,Miguel Pignatelli,Paul Flicek,Lian Jin,Tamer Kahveci,Dongwon Lee,W. Kent,Miguel Santos,Javier Herrero,Cédric Notredame,Audra Johnson,Shinny Vong,Kristen Lee,Daniel Bates,Fidencio Neri,Morgan Diegel,Theresa Canfield,Peter Sabo,Matthew Wilken,Thomas Reh,Erika Giste,Anthony Shafer,Tanya Kutyavin,Eric Haugen,Douglas Dunn,Alex Reynolds,Shane Neph,Richard Humbert,R. Hansen,Marella Bruijn,Licia Selleri,Alexander Rudensky,Steven Josefowicz,Robert Samstein,Evan Eichler,Stuart Orkin,Dana Levasseur,Thalia Papayannopoulou,Kai-Hsin Chang,Arthur Skoultchi,Srikanta Gosh,Christine Distèche,Piper Treuting,Yanli Wang,Mitchell Weiss,Gerd Blobel,Xiaoyi Cao,Sheng Zhong,Ting Wang,Peter Good,Rebecca Lowdon,Leslie Adams,Xiao-Qiao Zhou,Michael Pazin,Elise Feingold,B Wold,James Taylor,A Mortazavi,Sherman Weissman,J Stamatoyannopoulos,M Snyder,Roderic Guigó,T Gingeras,David Gilbert,Ross Hardison,M Beer
+134 authors
,Bing Ren
Journal
Published
Nov 19, 2014
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Abstract

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. To gain greater insights into both shared and species-specific transcriptional and cellular regulatory programs in the mouse, 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. By comparing with the human genome, we not only confirm substantial conservation in the newly annotated potential functional sequences, but also find a large degree of divergence of sequences involved in transcriptional regulation, chromatin state and higher order chromatin organization. Our results illuminate the wide range of evolutionary forces acting on genes and their regulatory regions, and provide a general resource for research into mammalian biology and mechanisms of human diseases.

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