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血管紧张素II激活心肌细胞中的RhoA:RhoA在血管紧张素II诱导的前肌原纤维形成中的关键作用。

Angiotensin II activates RhoA in cardiac myocytes: a critical role of RhoA in angiotensin II-induced premyofibril formation.

作者信息

Aoki H, Izumo S, Sadoshima J

机构信息

Cardiovascular Research Center, Division of Cardiology, University of Michigan Medical Center, Ann Arbor, USA.

出版信息

Circ Res. 1998 Apr 6;82(6):666-76. doi: 10.1161/01.res.82.6.666.

Abstract

The organization of actin into striated fibers (myofibrils) is one of the major features of cardiac hypertrophy. However, its signal transduction mechanism is not well understood. Although Rho-family small G proteins have been implicated in actin organization in many cell types, it is not fully elucidated whether Rho mediates the organization of actin fibers by hypertrophic stimuli in cardiac myocytes. Therefore, we examined (1) whether Rho is activated by the hypertrophic stimulus, angiotensin II (Ang II), and (2) whether Rho mediates the Ang II-induced organization of actin fibers in cultured neonatal rat cardiac myocytes. Treatment of myocytes with Ang II caused a rapid formation of both striated (mature myofibrils) and nonstriated (premyofibrils) actin fibers within 30 minutes, as determined by phalloidin stainings of the polymerized actin and troponin T stainings. Immunoblot analyses and immunostainings have indicated that cardiac myocytes express RhoA, but RhoB is undetectable. In the control state, RhoA was observed predominantly in the cytosolic fraction, but it was translocated in part to the particulate fraction in response to Ang II, consistent with activation of RhoA by Ang II. Incubation of myocytes with exoenzyme C3 for 48 hours completely ADP-ribosylated Rho in vivo. The C3 treatment abolished formation of premyofibrils induced by Ang II, suggesting that Ang II causes premyofibril formation via a Rho-dependent mechanism. The Ang II-induced mature myofibril formation was only partly abolished by C3. Expression of constitutively active RhoA (V14RhoA) caused the formation of premyofibrils but not mature myofibrils. The C3 treatment inhibited Ang II-induced atrial natriuretic factor induction, whereas it had no effect on c-fos induction. These results indicate that RhoA is activated by Ang II and mediates the Ang II-induced formation of premyofibrils and induction of a subset of genes. Distinct signaling mechanisms seem to be responsible for striated mature myofibril formation by Ang II.

摘要

肌动蛋白组织形成横纹纤维(肌原纤维)是心肌肥大的主要特征之一。然而,其信号转导机制尚未完全明确。尽管Rho家族小G蛋白在许多细胞类型的肌动蛋白组织形成过程中发挥作用,但Rho是否介导心肌细胞中肥大刺激引起的肌动蛋白纤维组织形成尚未完全阐明。因此,我们研究了:(1)Rho是否被肥大刺激物血管紧张素II(Ang II)激活;(2)Rho是否介导培养的新生大鼠心肌细胞中Ang II诱导的肌动蛋白纤维组织形成。用Ang II处理心肌细胞30分钟后,通过对聚合肌动蛋白的鬼笔环肽染色和肌钙蛋白T染色确定,横纹(成熟肌原纤维)和非横纹(前肌原纤维)肌动蛋白纤维迅速形成。免疫印迹分析和免疫染色表明心肌细胞表达RhoA,但未检测到RhoB。在对照状态下,RhoA主要存在于胞质组分中,但在Ang II作用下,它部分转位至颗粒组分,这与Ang II激活RhoA一致。用外切酶C3孵育心肌细胞48小时可在体内完全将Rho进行ADP核糖基化。C3处理消除了Ang II诱导的前肌原纤维形成,表明Ang II通过Rho依赖机制导致前肌原纤维形成。Ang II诱导的成熟肌原纤维形成仅部分被C3消除。组成型活性RhoA(V14RhoA)的表达导致前肌原纤维形成,但未导致成熟肌原纤维形成。C3处理抑制了Ang II诱导的心房钠尿肽诱导,而对c-fos诱导无影响。这些结果表明RhoA被Ang II激活,并介导Ang II诱导的前肌原纤维形成和部分基因的诱导。不同的信号转导机制似乎负责Ang II诱导的横纹成熟肌原纤维形成。

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