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 th...
Regulatory changes have long been hypothesized to play an important role in primate evolution. To id...
Although the continual expansion of the brain during primate evolution accounts for our enhanced cog...
Noncoding DNA is central to our understanding of human gene regulation and complex diseases and meas...
Altres ajuts: "La Caixa" Banking Foundation (LCF/BQ/PR19/11700002)Changes in the epigenetic regulati...
The evolution of the human phenotype involved gene regulatory innovations. Comparative functional ep...
Resumen del póster presentado al 1st Joint Meeting of the French-Portuguese-Spanish Biochemical and ...
Changes in the epigenetic regulation of gene expression have important implications for evolution. H...
Although genome sequencing has identified numerous noncoding alterations between primate species, wh...
Abstract Background Changes in...
Understanding the molecular basis for phenotypic differences between humans and other primates remai...
DNA methylation is an epigenetic modification involved in regulatory processes such as cell differen...
High-throughput functional assays of enhancer activity have recently enabled the genome-scale defini...
How evolutionary changes at enhancers affect the transcription of target genes remains an important ...
Summary cis-regulatory changes play a central role in morphological divergence, yet the regulatory p...
Although emerging evidence suggests that transposable elements (TEs) have contributed novel regulato...
Regulatory changes have long been hypothesized to play an important role in primate evolution. To id...
Although the continual expansion of the brain during primate evolution accounts for our enhanced cog...
Noncoding DNA is central to our understanding of human gene regulation and complex diseases and meas...
Altres ajuts: "La Caixa" Banking Foundation (LCF/BQ/PR19/11700002)Changes in the epigenetic regulati...
The evolution of the human phenotype involved gene regulatory innovations. Comparative functional ep...
Resumen del póster presentado al 1st Joint Meeting of the French-Portuguese-Spanish Biochemical and ...
Changes in the epigenetic regulation of gene expression have important implications for evolution. H...
Although genome sequencing has identified numerous noncoding alterations between primate species, wh...
Abstract Background Changes in...
Understanding the molecular basis for phenotypic differences between humans and other primates remai...
DNA methylation is an epigenetic modification involved in regulatory processes such as cell differen...
High-throughput functional assays of enhancer activity have recently enabled the genome-scale defini...
How evolutionary changes at enhancers affect the transcription of target genes remains an important ...
Summary cis-regulatory changes play a central role in morphological divergence, yet the regulatory p...
Although emerging evidence suggests that transposable elements (TEs) have contributed novel regulato...
Regulatory changes have long been hypothesized to play an important role in primate evolution. To id...
Although the continual expansion of the brain during primate evolution accounts for our enhanced cog...
Noncoding DNA is central to our understanding of human gene regulation and complex diseases and meas...