Institute of Cardiovascular Sciences, Albrechtsen Research Centre, St Boniface Hospital, Canada; Departments of Physiology and Pathophysiology, Canada.
Institute of Physiology, Czech Academy of Sciences, Prague, Czech Republic.
Cell Signal. 2018 Jul;47:44-51. doi: 10.1016/j.cellsig.2018.03.011. Epub 2018 Mar 26.
Heat shock protein 60 (Hsp60) is a mediator of stress-induced vascular smooth muscle cell (VSMC) proliferation. This study will determine, first, if the mitochondrial or cytoplasmic localization of Hsp60 is critical to VSMC proliferation and, second, the mechanism of Hsp60 induction of VSMC proliferation with a focus on modification of nucleocytoplasmic trafficking.
Hsp60 was overexpressed in primary rabbit VSMCs with or without a mitochondrial targeting sequence (AdHsp60). Both interventions induced an increase in VSMC PCNA expression and proliferation. The increase in VSMC PCNA expression and growth was not observed after siRNA-mediated knockdown of Hsp60 expression. Nuclear protein import in VSMC was measured by fluorescent microscopy using a microinjected fluorescent import substrate. Nuclear protein import was stimulated by both AdHsp60 and AdHsp60 treatments. AdHsp60 treatment also induced increases in nucleoporin (Nup) 62, Nup153, importin-α, importin-β and Ran expression as well as cellular ATP levels compared to control. AdHsp60 treatment induced an up-regulation in importin-α, importin-β and Ran expression compared to control. Hsp60 knockdown did not change nuclear protein import nor the expression of any nuclear transport receptors or nucleoporins. Both heat shock treatment and Hsp60 overexpression promoted the interaction of Ran with Hsp60.
VSMC proliferation can be modulated via an Hsp60 dependent, cytosol localized mechanism that in part involves a stimulation of nuclear protein import through an interaction with Ran. This novel cellular signaling role for Hsp60 may be important in growth-based vascular pathologies like atherosclerosis and hypertension.
热休克蛋白 60(Hsp60)是应激诱导的血管平滑肌细胞(VSMC)增殖的介质。本研究首先将确定 Hsp60 的线粒体或细胞质定位是否对 VSMC 增殖至关重要,其次将确定 Hsp60 诱导 VSMC 增殖的机制,重点是核质转运的修饰。
用或不用线粒体靶向序列(AdHsp60)在原代兔 VSMC 中转染 Hsp60。两种干预均诱导 VSMC PCNA 表达和增殖增加。在用 siRNA 介导的 Hsp60 表达敲低后,未观察到 VSMC PCNA 表达和生长的增加。通过使用微注射荧光导入底物的荧光显微镜测量 VSMC 中的核蛋白导入。AdHsp60 和 AdHsp60 处理均刺激核蛋白导入。AdHsp60 处理还诱导核孔蛋白(Nup)62、Nup153、importin-α、importin-β 和 Ran 的表达以及细胞内 ATP 水平与对照相比增加。与对照相比,AdHsp60 处理诱导了 importin-α、importin-β 和 Ran 的表达上调。Hsp60 敲低并未改变核蛋白导入或任何核转运受体或核孔蛋白的表达。热休克处理和 Hsp60 过表达均促进了 Ran 与 Hsp60 的相互作用。
VSMC 增殖可以通过依赖于 Hsp60 的细胞质定位机制进行调节,该机制部分涉及通过与 Ran 的相互作用刺激核蛋白导入。Hsp60 的这种新型细胞信号作用可能在动脉粥样硬化和高血压等基于生长的血管病理学中很重要。