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RHOA-ROCK 信号通路对于窦房结的发育中的侧化和分化是必需的。

RHOA-ROCK signalling is necessary for lateralization and differentiation of the developing sinoatrial node.

机构信息

Department of Anatomy & Embryology, Leiden University Medical Center, Leiden, The Netherlands.

Department of Cardiology, Leiden University Medical Center, Leiden, The Netherlands.

出版信息

Cardiovasc Res. 2017 Aug 1;113(10):1186-1197. doi: 10.1093/cvr/cvx104.

DOI:10.1093/cvr/cvx104
PMID:28899000
Abstract

AIMS

RHOA-ROCK signalling regulates cell migration, proliferation, differentiation, and transcription. RHOA is expressed in the developing cardiac conduction system in chicken and mice. In early development, the entire sinus venosus myocardium, including both the transient left-sided and the definitive sinoatrial node (SAN), has pacemaker potential. Later, pacemaker potential is restricted to the right-sided SAN. Disruption of RHOA expression in adult mice causes arrhythmias including bradycardia and atrial fibrillation, the mechanism of which is unknown but presumed to affect the SAN. The aim of this study is to assess the role of RHOA-ROCK signalling in SAN development in the chicken heart.

METHODS AND RESULTS

ROCK signalling was inhibited chemically in embryonic chicken hearts using Y-27632. This prolonged the immature state of the sinus venosus myocardium, evidenced by up-regulation of the transcription factor ISL1, wide distribution of pacemaker potential, and significantly reduced heart rate. Furthermore ROCK inhibition caused aberrant expression of typical SAN genes: ROCK1, ROCK2, SHOX2, TBX3, TBX5, ISL1, HCN4, CX40, CAV3.1, and NKX2.5 and left-right asymmetry genes: PITX2C and NODAL. Anatomical abnormalities in pulmonary vein development were also observed. Patch clamp electrophysiology confirmed the immature phenotype of the SAN cells and a residual left-sided sinus venosus myocardium pacemaker-like potential.

CONCLUSIONS

RHOA-ROCK signalling is involved in establishing the right-sided SAN as the definitive pacemaker of the heart and restricts typical pacemaker gene expression to the right side of the sinus venosus myocardium.

摘要

目的

RHOA-ROCK 信号通路调节细胞迁移、增殖、分化和转录。RHOA 在鸡和小鼠的心脏传导系统发育中表达。在早期发育过程中,整个窦房结静脉心肌,包括短暂的左侧和明确的窦房结(SAN),都具有起搏潜能。后来,起搏潜能仅限于右侧 SAN。成年小鼠 RHOA 表达的破坏会导致心律失常,包括心动过缓和心房颤动,其机制尚不清楚,但推测会影响 SAN。本研究的目的是评估 RHOA-ROCK 信号通路在鸡心脏 SAN 发育中的作用。

方法和结果

在鸡胚心脏中使用 Y-27632 化学抑制 ROCK 信号通路。这延长了窦房结静脉心肌的不成熟状态,证据是转录因子 ISL1 的上调、起搏潜能的广泛分布以及心率显著降低。此外,ROCK 抑制还导致典型的 SAN 基因:ROCK1、ROCK2、SHOX2、TBX3、TBX5、ISL1、HCN4、CX40、CAV3.1 和 NKX2.5 以及左右不对称基因:PITX2C 和 NODAL 的异常表达。还观察到肺静脉发育的解剖异常。膜片钳电生理学证实了 SAN 细胞的不成熟表型和残留的左侧窦房结静脉心肌起搏样潜能。

结论

RHOA-ROCK 信号通路参与建立右侧 SAN 作为心脏的明确起搏点,并将典型的起搏基因表达限制在窦房结静脉心肌的右侧。

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