组蛋白脱乙酰化酶sirt1参与耐药的发生

the histone deacetylase, sirt1, contributes to the resistance
作者:Fan, H.ab, Yang, H.-C.ac, You, L.ab, Wang, Y.-Y.b,
机构: 复旦大学医学院附属华山医院肾内科
期刊: KIDNEY INT2013年3月3期83卷

Division of Nephrology, Huashan Hospital, Fudan University, Shanghai, China

Acute kidney injury (AKI) is a critical condition with a mortality rate as high as 50% and significantly contributes to the burden of end-stage renal disease (ESRD) requiring renal replacement therapy. The incidence and prognosis of AKI have been shown to vary with patient age, with younger individuals being more resistant to AKI. In mice, clamping the renal artery for 45 min causes substantial kidney damage in 4-month-old animals but only mild renal injury in 2-month-old animals. Here, younger mice were found to express higher levels of the NAD + -dependent histone deacetylase SIRT1 in the kidney. A small molecule SIRT1 activator, SRT-1720, markedly improved renal tubular pathology and overall renal function in adult mice following ischemia/reperfusion. Genetic ablation of one allele (SIRT1 +/-) significantly enhanced the level of kidney damage relative to that in wild-type (SIRT1 +/+) mice. The mechanisms underlying the protective effect of SIRT1 included the suppression of cell apoptosis. Hence, our results suggest that SIRT1 might be a novel therapeutic target for ischemia/reperfusion-induced kidney damage. © 2012 International Society of Nephrology.

Hao, C.-M.; Division of Nephrology, Huashan Hospital, Fudan University, Shanghai, China; email:chuanming.hao@vanderbilt.edu

通讯作者:Hao, C.-M.; Division of Nephrology, Huashan Hospital, Fudan University, Shanghai, China; email:chuanming.hao@vanderbilt.edu
学科代码:肾脏病学   关键词:Histone_acetylation
来源: Scopus
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