Methylome of human senescent hematopoietic progenitors

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作者
Stephen Capone
Anthony R. Colombo
Benjamin K. Johnson
Tim J. Triche
Giridharan Ramsingh
机构
[1] Keck School of Medicine of University of Southern California,Jane Anne Nohl Division of Hematology and Center for the Study of Blood Diseases
[2] Van Andel Research Institute,Center for Epigenetics
来源
Experimental Hematology & Oncology | / 7卷
关键词
Senescence; Hematopoietic stem and progenitor cells; Inflammation; Transposable elements; Endogenous retroviruses; Whole genome bisulfite sequencing; Methylation; CEBPβ; Transcriptome;
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摘要
Senescence, a state of permanent cell cycle arrest, can be induced by DNA damage. This process, which was initially described in fibroblasts, is now recognized to occur in stem cells. It has been well characterized in cell lines, but there is currently very limited data available on human senescence in vivo. We recently reported that the expression of transposable elements (TE), including endogenous retroviruses, was up-regulated along with inflammatory genes in human senescent hematopoietic stem and progenitor cells (HSPCs) in vivo. The mechanism of regulation of TE expression is not completely understood, but changes in DNA methylation and chromatin modifications are known to alter their expression. In order to elucidate the molecular mechanisms for TE up-regulation after senescence of HSPCs, we employed whole-genome bisulfite sequencing in paired senescent and active human HSPCs in vivo from healthy subjects. We found that the senescent HSPCs exhibited hypomethylated regions in the genome, which were enriched for TEs. This is the first report characterizing the methylome of senescent human HSPCs.
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