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Widespread Chromatin Accessibility at Repetitive Elements Links Stem Cells with Human Cancer
Author(s) -
Nicholas C. Gomez,
Austin J. Hepperla,
‎Raluca Dumitru,
Jeremy M. Simon,
Fang Fang,
Ian J. Davis
Publication year - 2016
Publication title -
cell reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.264
H-Index - 154
eISSN - 2639-1856
pISSN - 2211-1247
DOI - 10.1016/j.celrep.2016.10.011
Subject(s) - chromatin , biology , stem cell , chromatin remodeling , histone , embryonic stem cell , microbiology and biotechnology , bivalent chromatin , carcinogenesis , multipotent stem cell , nucleosome , histone modifying enzymes , cellular differentiation , chia pet , cancer research , genetics , cancer , gene , progenitor cell
Chromatin regulation is critical for differentiation and disease. However, features linking the chromatin environment of stem cells with disease remain largely unknown. We explored chromatin accessibility in embryonic and multipotent stem cells and unexpectedly identified widespread chromatin accessibility at repetitive elements. Integrating genomic and biochemical approaches, we demonstrate that these sites of increased accessibility are associated with well-positioned nucleosomes marked by distinct histone modifications. Differentiation is accompanied by chromatin remodeling at repetitive elements associated with altered expression of genes in relevant developmental pathways. Remarkably, we found that the chromatin environment of Ewing sarcoma, a mesenchymally derived tumor, is shared with primary mesenchymal stem cells (MSCs). Accessibility at repetitive elements in MSCs offers a permissive environment that is exploited by the critical oncogene responsible for this cancer. Our data demonstrate that stem cells harbor a unique chromatin landscape characterized by accessibility at repetitive elements, a feature associated with differentiation and oncogenesis.

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