Thompson Anne Marie, Wagner Robert, Rzucidlo Eva M
Am J Physiol Heart Circ Physiol. 2014 Aug 15;307(4):H533-41. doi: 10.1152/ajpheart.00871.2013.
Loss of vascular smooth muscle cell (VSMC) function is a hallmark of vascular disease. VSMCs become increasingly dysregulated, apoptotic, and senescent as we age. Sirtuin 1 (SirT1) is a deactylase that regulates substrates associated with stress mitigation, metabolism, and aging. Our aim was to examine the role of SirT1 in vascular aging and the function this protein plays in the context of cellular response to stress and senescence. We compared endogenous SirT1 expression in young and old human donors. Human VSMC (HuVSMC) from donors ranging in age from 12 to 88 (n = 14) were isolated and cultured. In cultured HuVSMC the levels of endogenous SirT1 were examined by Western blot analysis. We found that endogenous SirT1 protein expression inversely correlated with donor age. Additionally, we demonstrated that age-related loss of SirT1 correlated in functional deficits, diminished stress response, reduced capacity for migration, and proliferation and increased senescence. Manipulation of SirT1 levels in young cells confirmed the role of SirT1 in cellular migration and proliferation capability. Furthermore, we demonstrated that age-related loss of SirT1 was associated with the induction of VSMC senescence. With correlation to symptomatic disease, we demonstrated a significant difference in SirT1 levels from HuVSMC isolated from aged arteries that were occluded with atherosclerotic lesions (n = 7), compared with patent sections of the same artery. Having demonstrated that endogenous SirT1 is lost with age, which correlates with a loss of capacity for vascular repair, our data explain one of the molecular changes that occurs in the aged vasculature.
血管平滑肌细胞(VSMC)功能丧失是血管疾病的一个标志。随着年龄增长,VSMC变得越来越失调、凋亡和衰老。沉默调节蛋白1(SirT1)是一种去乙酰化酶,可调节与应激缓解、新陈代谢和衰老相关的底物。我们的目的是研究SirT1在血管衰老中的作用以及该蛋白在细胞对应激和衰老反应中的功能。我们比较了年轻和老年人类供体中内源性SirT1的表达。从12至88岁(n = 14)的供体中分离并培养人类VSMC(HuVSMC)。通过蛋白质印迹分析检测培养的HuVSMC中内源性SirT1的水平。我们发现内源性SirT1蛋白表达与供体年龄呈负相关。此外,我们证明与年龄相关的SirT1缺失与功能缺陷、应激反应减弱、迁移和增殖能力降低以及衰老增加相关。对年轻细胞中SirT1水平的操控证实了SirT1在细胞迁移和增殖能力中的作用。此外,我们证明与年龄相关的SirT1缺失与VSMC衰老的诱导有关。与症状性疾病相关,我们证明与同一动脉的无病变节段相比,从有动脉粥样硬化病变阻塞的老年动脉中分离的HuVSMC的SirT1水平存在显著差异(n = 7)。在证明内源性SirT1随年龄丧失且这与血管修复能力丧失相关后,我们的数据解释了老年血管中发生的分子变化之一。