Epigenomic profiling of primate lymphoblastoid cell lines reveals the evolutionary patterns of epigenetic activities in gene regulatory architectures.
Epigenomic profiling of primate lymphoblastoid cell lines reveals the evolutionary patterns of epigenetic activities in gene regulatory architectures.
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灵长类动物淋巴细胞细胞系的表观基因组分析揭示了基因调节结构中表观遗传活性的进化模式。
DOI:
10.1038/s41467-021-23397-1
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发表时间:
2021-05-25
影响因子:
16.6
通讯作者:
Marquès-Bonet T
中科院分区:
文献类型:
--
作者:
García-Pérez R;Esteller-Cucala P;Mas G;Lobón I;Di Carlo V;Riera M;Kuhlwilm M;Navarro A;Blancher A;Di Croce L;Gómez-Skarmeta JL;Juan D;Marquès-Bonet T
Changes in the epigenetic regulation of gene expression have a central role in evolution. Here, we extensively profiled a panel of human, chimpanzee, gorilla, orangutan, and macaque lymphoblastoid cell lines (LCLs), using ChIP-seq for five histone marks, ATAC-seq and RNA-seq, further complemented with whole genome sequencing (WGS) and whole genome bisulfite sequencing (WGBS). We annotated regulatory elements (RE) and integrated chromatin contact maps to define gene regulatory architectures, creating the largest catalog of RE in primates to date. We report that epigenetic conservation and its correlation with sequence conservation in primates depends on the activity state of the regulatory element. Our gene regulatory architectures reveal the coordination of different types of components and highlight the role of promoters and intragenic enhancers (gE) in the regulation of gene expression. We observe that most regulatory changes occur in weakly active gE. Remarkably, novel human-specific gE with weak activities are enriched in human-specific nucleotide changes. These elements appear in genes with signals of positive selection and human acceleration, tissue-specific expression, and particular functional enrichments, suggesting that the regulatory evolution of these genes may have contributed to human adaptation. Comparative epigenomics has revealed principles underlying the evolution of gene expression regulation, and the integration of epigenomic data is important for a deeper understanding of this evolution. Here the authors report the evolutionary dynamics of the epigenomic regulatory landscape in primates and their impact in recent human evolution.
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影响因子:
4.6
作者:
Andrews, William;Liapi, Anastasia;Richards, Linda J.
通讯作者:
Richards, Linda J.
DOI:
10.1126/science.aag2602
发表时间:
2016-10-28
期刊:
Science (New York, N.Y.)
影响因子:
--
作者:
de Manuel M;Kuhlwilm M;Frandsen P;Sousa VC;Desai T;Prado-Martinez J;Hernandez-Rodriguez J;Dupanloup I;Lao O;Hallast P;Schmidt JM;Heredia-Genestar JM;Benazzo A;Barbujani G;Peter BM;Kuderna LF;Casals F;Angedakin S;Arandjelovic M;Boesch C;Kühl H;Vigilant L;Langergraber K;Novembre J;Gut M;Gut I;Navarro A;Carlsen F;Andrés AM;Siegismund HR;Scally A;Excoffier L;Tyler-Smith C;Castellano S;Xue Y;Hvilsom C;Marques-Bonet T
通讯作者:
Marques-Bonet T
影响因子:
16.8
作者:
Berthelot C;Villar D;Horvath JE;Odom DT;Flicek P
通讯作者:
Flicek P
影响因子:
12.3
作者:
Blake LE;Thomas SM;Blischak JD;Hsiao CJ;Chavarria C;Myrthil M;Gilad Y;Pavlovic BJ
通讯作者:
Pavlovic BJ
影响因子:
64.8
作者:
1000 Genomes Project Consortium;Auton A;Brooks LD;Durbin RM;Garrison EP;Kang HM;Korbel JO;Marchini JL;McCarthy S;McVean GA;Abecasis GR
通讯作者:
Abecasis GR