AG百家乐大转轮-AG百家乐导航_怎么看百家乐走势_全讯网官网 (中国)·官方网站

Research News

Professor Hui Huang’s team discovered the new potential of longevity protein SIRT6 in vascular calcification

Source: The Eighth Affiliated Hospital
Edited by: Zheng Longfei, Wang Dongmei

Vascular calcification (VC), especially in tunica media, is prevalent in patients with chronic kidney disease (CKD). Previous researches have revealed that VC is a major contributor to major adverse cardiovascular events in CKD and thus is considered an important pathological change in cardiovascular disease. Despite severe clinical consequences, the molecular mechanism underlying VC remains ill defined and no effective therapeutic strategies are currently available to prevent or halt the progression of VC in CKD. Sirtuin 6 (SIRT6) is a member of Sirtuin family, a class III histone deacetylase and a key epigenetic regulator. SIRT6 has a protective role in patients with CKD, however the exact role and molecular mechanism of SIRT6 in VC in CKD patients remains unclear.

Recently, Prof. Hui Huang’s team from the Eighth Affiliated Hospital, Sun Yat-sen University, found a new progress in uncovering the mechanism of VC in CKD, and the new research achievement entitled ‘SIRT6 protects vascular smooth muscle cell from osteogenic transdifferentiation via Runx2 in chronic kidney disease’ was published in Journal of Clinical Investigation. Using clinical samples from CKD patients, they identified that SIRT6 was decreased in PBMCs and calcified arteries. They demonstrated the effect of SIRT6 inhibition VC in CKD and suppression of osteogenic transdifferentiation in VSMCs both in vivo of WT and SIRT6-Tg mice and in vitro of VSMCs. They identified SIRT6 suppressed the osteogenic transdifferentiation of VSMCs via regulation of runt-related transcription factor 2 (Runx2). Further experiments screening illustrated that SIRT6 bound to Runx2 and deacetylated Runx2, which promoted degradation of Runx2 through the ubiquitin-proteasome system. In addition, they found that ubiquitination and degradation of Runx2 were depend on nuclear export via exportin 1(XPO1). Inhibition of XPO1 partly reversed the protective role of SIRT6 towards VC. In conclusion, SIRT6 prevented VC by suppressing the osteogenic transdifferentiation of VSMCs via promoting Runx2 deacetylation and further nuclear export via exportin 1(XPO1), which in turn caused degradation of Runx2 through the ubiquitin-proteasome system.

Prof. Hui Huang’s group revealed for the first time on the function that SIRT6 prevents VC through post-translational regulation of Runx2 activity and stability. These findings suggest that SIRT6 may be an innovative therapeutic strategy for vascular calcification.

 
Prof. Hui Huang (The Eighth Affiliated Hospital, Sun Yat-sen University) is the corresponding author. The PhD. student Wenxin Li (The Eighth Affiliated Hospital, Sun Yat-sen University), Dr. Weijing Feng (Nanfang Hospital, Southern Medical University), Dr. Xiaoyan Su (Tungwah Hospital of Sun Yat-sen University) and PhD. student Dongling Luo (The Eighth Affiliated Hospital, Sun Yat-sen University) contributed equally to this work. Professor Baohua Liu at the Shenzhen University Health Science Center provided valuable advice. This research was supported by National Natural Science Foundation of China (No. 8201101103, 81870506, 91849208 and 81670676).

Link to the paper: https://www.jci.org/articles/view/150051
青鹏棋牌官网| 名仕国际棋牌下载| 百家乐官网线路图分析| 百家乐长龙技巧| 瑞博网站| 百家乐官网足球| 大发888娱乐场下载英皇国际| 波音代理| 新太阳城娱乐城| 威尼斯人娱乐棋牌下载| 大发888提款速度快吗| 百家乐官网美食坊| 百家乐软件辅助器| 美国百家乐官网怎么玩| 德晋百家乐的玩法技巧和规则 | 真人百家乐官网平台排行| 太阳城百家乐官网祖玛| 网络百家乐金海岸破解软件| 壹贰博网| 在线百家乐3d| 百家乐官网的规则博彩正网| 百家乐计算法| 百家乐官网8点| 巴南区| 百家乐伴侣破解版| 菲律宾百家乐官网开户| 盛大69棋牌游戏| 六合彩生肖表| 百家乐必胜课| 百家乐游戏机| 总玩百家乐有赢的吗| 百家乐平台租用| 大富翁娱乐城| 百家乐赌场技巧网| 百家乐官网群121398015| 波音现金网投注| 哪家百家乐官网从哪而来| 娱乐城百家乐官网论坛| 百家乐的视频百家乐| 太阳城百家乐官网怎么出千| 大发888娱乐城出纳柜台|