表观遗传学
Notch信号通路
DNMT1型
细胞生物学
移植
癌症研究
生物
DNA甲基化
骨量减少
间充质干细胞
微泡
外体
免疫学
细胞内
医学
信号转导
甲基化
甲基转移酶
内分泌学
内科学
小RNA
遗传学
骨质疏松症
基因表达
DNA
骨矿物
基因
作者
Shiyu Liu,Dawei Liu,Chider Chen,Kazunori Hamamura,Alireza Moshaverinia,Ruili Yang,Yao Liu,Yan Jin,Songtao Shi
标识
DOI:10.1016/j.cmet.2015.08.018
摘要
Mesenchymal stem cell transplantation (MSCT) has been used to treat human diseases, but the detailed mechanisms underlying its success are not fully understood. Here we show that MSCT rescues bone marrow MSC (BMMSC) function and ameliorates osteopenia in Fas-deficient-MRL/lpr mice. Mechanistically, we show that Fas deficiency causes failure of miR-29b release, thereby elevating intracellular miR-29b levels, and downregulates DNA methyltransferase 1 (Dnmt1) expression in MRL/lpr BMMSCs. This results in hypomethylation of the Notch1 promoter and activation of Notch signaling, in turn leading to impaired osteogenic differentiation. Furthermore, we show that exosomes, secreted due to MSCT, transfer Fas to recipient MRL/lpr BMMSCs to reduce intracellular levels of miR-29b, which results in recovery of Dnmt1-mediated Notch1 promoter hypomethylation and thereby improves MRL/lpr BMMSC function. Collectively our findings unravel the means by which MSCT rescues MRL/lpr BMMSC function through reuse of donor exosome-provided Fas to regulate the miR-29b/Dnmt1/Notch epigenetic cascade.
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