BRCA2 ChIP-seq hTert-HME1 cell line
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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE133450
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Individuals with a single functional copy of the BRCA2 tumor suppressor have elevated risks for breast, ovarian, and other solid tumor malignancies. The exact mechanisms of carcinogenesis due to BRCA2 haploinsufficiency remain unclear, but one possibility is that at-risk cells are subject to acute periods of decreased BRCA2 availability and function ("BRCA2-crisis"), which may contribute to disease. Here, we establish an in vitro model for BRCA2-crisis that demonstrates chromatin remodeling and activation of an NF-κB survival pathway in response to transient BRCA2 depletion. Mechanistically, we identify BRCA2 chromatin binding, histone acetylation, and associated transcriptional activity as critical determinants of the epigenetic response to BRCA2-crisis. These chromatin alterations are reflected in transcriptional profiles of pre-malignant tissues from BRCA2 carriers and, therefore, may reflect natural steps in human disease. By modeling BRCA2-crisis in vitro, we have derived insights into pre-neoplastic molecular alterations that may enhance the development of preventative therapies. Antibodies to BRCA2 (Bethyl A300-005A) were used to immunoprecipitate BRCA2 from formaldehyde-crosslinked human hTert-HME1 cell line. 2 replicates of BRCA2 ChIP were compared to 2 replicates of input chromatin compared by Diffbind
创建时间:
2019-11-06



