Division of Clinical Epigenetics, Research Center for Advanced Science and Technology, The University of Tokyo, Tokyo, Japan.
Division of Endocrinology, Mitsui Memorial Hospital, Tokyo, Japan.
Sci Rep. 2018 Nov 5;8(1):16338. doi: 10.1038/s41598-018-34612-3.
Epigenetic modulation may underlie the progression of diabetic nephropathy (DN). Involvement of TGFB1 in mesangial fibrosis of DN led us to hypothesize that Tgfb1 DNA demethylation contributes to progression of DN. In primary mesangial cells from diabetic (db/db) mouse kidneys, demethylation of Tgfb1 DNA and upregulation of Tgfb1 mRNA progressed simultaneously. USF1 binding site in Tgfb1 promoter region were demethylated, and binding of USF1 increased, with decreased binding of DNMT1 in db/db compared with control. Given downregulation of Tgfb1 expression by folic acid, antioxidant Tempol reversed DNA demethylation, with increased and decreased recruitment of DNMT1 and USF1 to the promoter, resulting in decreased Tgfb1 expression in db/db mice. Addition of HO to mesangial cells induced DNA demethylation and upregulated Tgfb1 expression. Finally, Tempol attenuated mesangial fibrosis in db/db mice. We conclude that aberrant DNA methylation of Tgfb1 due to ROS overproduction play a key to mesangial fibrosis during DN progression.
表观遗传调控可能是糖尿病肾病 (DN) 进展的基础。TGFB1 参与 DN 的系膜纤维化,这使我们假设 Tgfb1 DNA 去甲基化有助于 DN 的进展。在糖尿病 (db/db) 小鼠肾脏的原代系膜细胞中,Tgfb1 DNA 的去甲基化和 Tgfb1 mRNA 的上调同时进行。与对照组相比,Tgfb1 启动子区域的 USF1 结合位点去甲基化,USF1 结合增加,DNMT1 结合减少。由于叶酸下调 Tgfb1 表达,抗氧化剂 Tempol 逆转了 DNA 去甲基化,DNMT1 和 USF1 募集到启动子的增加和减少,导致 db/db 小鼠 Tgfb1 表达减少。HO 添加到系膜细胞中诱导 DNA 去甲基化和 Tgfb1 表达上调。最后,Tempol 减轻了 db/db 小鼠的系膜纤维化。我们得出结论,ROS 过度产生导致的 Tgfb1 异常 DNA 甲基化在 DN 进展期间的系膜纤维化中起着关键作用。