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PMID: 26273425 已发表 · ppublish 英语

GC-Rich Extracellular DNA Induces Oxidative Stress, Double-Strand DNA Breaks, and DNA Damage Response in Human Adipose-Derived Mesenchymal Stem Cells.

Oxidative medicine and cellular longevity ·第 2015 卷 ·2016-05-18

Kostyuk Svetlana, Smirnova Tatiana, Kameneva Larisa, Porokhovnik Lev, Speranskij Anatolij, Ershova Elizaveta, Stukalov Sergey, Izevskaya Vera, Veiko Natalia

摘要

Cell free DNA (cfDNA) circulates throughout the bloodstream of both healthy people and patients with various diseases. CfDNA is substantially enriched in its GC-content as compared with human genomic DNA.,Exposure of haMSCs to GC-DNA induces short-term oxidative stress (determined with H2DCFH-DA) and results in both single- and double-strand DNA breaks (comet assay and γH2AX, foci). As a result in the cells significantly increases the expression of repair genes (BRCA1 (RT-PCR), PCNA (FACS)) and antiapoptotic genes (BCL2 (RT-PCR and FACS), BCL2A1, BCL2L1, BIRC3, and BIRC2 (RT-PCR)). Under the action of GC-DNA the potential of mitochondria was increased. Here we show that GC-rich extracellular DNA stimulates adipocyte differentiation of human adipose-derived mesenchymal stem cells (haMSCs). Exposure to GC-DNA leads to an increase in the level of RNAPPARG2 and LPL (RT-PCR), in the level of fatty acid binding protein FABP4 (FACS analysis) and in the level of fat (Oil Red O).,GC-rich fragments in the pool of cfDNA can potentially induce oxidative stress and DNA damage response and affect the direction of mesenchymal stem cells differentiation in human adipose-derived mesenchymal stem cells. Such a response may be one of the causes of obesity or osteoporosis.

文献信息
期刊
Oxidative medicine and cellular longevity
期刊简称
Oxid Med Cell Longev
ISSN
1942-0994
发表日期
2016-05-18
收录日期
2015-08-14
更新日期
2015-08-16
语言
英语
国家/地区
United States
NLM ID
101479826
外部链接
PubMed 原文
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