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Rho 相关激酶 2 在血管收缩性固有昼夜节律产生中的关键作用。

Pivotal role of Rho-associated kinase 2 in generating the intrinsic circadian rhythm of vascular contractility.

机构信息

Division of Molecular Cardiology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.

出版信息

Circulation. 2013 Jan 1;127(1):104-14. doi: 10.1161/CIRCULATIONAHA.112.135608. Epub 2012 Nov 21.

Abstract

BACKGROUND

The circadian variation in the incidence of cardiovascular events may be attributable to the circadian changes in vascular contractility. The circadian rhythm of vascular contractility is determined by the interplay between the central and peripheral clocks. However, the molecular mechanism of the vascular intrinsic clock that generates the circadian rhythm of vascular contractility still remains largely unknown.

METHODS AND RESULTS

The agonist-induced phosphorylation of myosin light chain in cultured smooth muscle cells synchronized by dexamethasone pulse treatment exhibited an apparent circadian oscillation, with a 25.4-hour cycle length. The pharmacological inhibition and knockdown of Rho-associated kinase 2 (ROCK2) abolished the circadian rhythm of myosin light chain phosphorylation. The expression and activity of ROCK2 exhibited a circadian rhythm in phase with that of myosin light chain phosphorylation. A clock gene, RORα, activated the promoter of the ROCK2 gene, whereas its knockdown abolished the rhythmic expression of ROCK2. In the mouse aorta, ROCK2 expression exhibited the circadian oscillation, with a peak at Zeitgeber time 0/24 and a nadir at Zeitgeber time 12. The myofilament Ca(2+) sensitization induced by GTPγS and U46619, a thromboxane A2 analog, at Zeitgeber time 0/24 was greater than that seen at Zeitgeber time 12. The circadian rhythm of ROCK2 expression and myofilament Ca(2+) sensitivity was abolished in staggerer mutant mice, which lack a functional RORα.

CONCLUSIONS

ROCK2 plays a pivotal role in generating the intrinsic circadian rhythm of vascular contractility by receiving a cue from RORα. The ROCK2-mediated intrinsic rhythm of vascular contractility may underlie the diurnal variation of the incidence of cardiovascular diseases.

摘要

背景

心血管事件的发病呈昼夜节律变化,这可能与血管收缩力的昼夜变化有关。血管收缩力的昼夜节律由中枢时钟和外周时钟的相互作用决定。然而,产生血管收缩力昼夜节律的血管内在时钟的分子机制在很大程度上仍然未知。

方法和结果

用地塞米松脉冲处理同步培养的平滑肌细胞,诱导肌球蛋白轻链磷酸化,其磷酸化表现出明显的昼夜振荡,周期长度为 25.4 小时。Rho 相关激酶 2(ROCK2)的药理学抑制和敲低消除了肌球蛋白轻链磷酸化的昼夜节律。ROCK2 的表达和活性与肌球蛋白轻链磷酸化的相位呈昼夜节律。节律基因 RORα 激活了 ROCK2 基因的启动子,而其敲低则消除了 ROCK2 的节律性表达。在小鼠主动脉中,ROCK2 的表达呈昼夜节律性波动,在 Zeitgeber 时间 0/24 时达到峰值,在 Zeitgeber 时间 12 时达到低谷。在 Zeitgeber 时间 0/24 时,用 GTPγS 和血栓烷 A2 类似物 U46619 诱导的肌球蛋白丝 Ca2+敏感性高于 Zeitgeber 时间 12 时。在 staggerer 突变小鼠中,ROCK2 表达和肌球蛋白丝 Ca2+敏感性的昼夜节律被消除,这些小鼠缺乏功能性 RORα。

结论

ROCK2 通过接收 RORα 的信号,在产生血管收缩力的内在昼夜节律中发挥关键作用。ROCK2 介导的血管收缩力内在节律可能是心血管疾病发病昼夜变化的基础。

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