分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Function of connexin 43 and RhoA/LIMK2/Cofilin signaling pathway in transient changes of contraction and dilation of human umbilical arterial smooth muscle cells

Zhizhao Deng, Yanling Zhang, Qian Zhang, Xianlong Li, Weiqi Zeng, Cai Jun, Dongdong Yuan

Journal:INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY

IF:5.65

DOI:10.1016/j.biocel.2022.106326

PMID:36330887

Published:2022-10-28

research field:肿瘤学神经科学表观遗传学

Abstract

Background Post-induction hypotension, a common complication after propofol-based induction regimen, is a life-threatening challenge for anesthesiologists especially when unexpected pre-induction hypertension characterized by angiotensin release and increased vascular tone was presented by the same patient. Gap junctions (GJs) composed of connexin 43 (Cx43) have been considered a key factor in regulating vascular contraction and dilation. We aimed to explore the role of Cx43-GJs during peri-induction blood pressure fluctuation and elucidate the underlying mechanisms. Methods Human umbilical arterial smooth muscle cells (HUASMCs) were pretreated by short-term Angiotensin Ⅱ (Ang Ⅱ) with or without subsequent propofol treatment to simulate transient contraction and dilation of vascular smooth muscle cells during anesthesia induction. F-actin polymerization, a classic indicator of HUASMCs constriction, was determined by F-actin staining assay. Both the function and expression of Cx43-GJs during transient contraction and dilation of HUASMCs, and their potential regulation of downstream Ca 2+ /RhoA/LIMK2/Cofilin signaling pathway were explored via different targeting inhibitors and siRNAs. Results Ang Ⅱ pretreatment significantly induced F-actin polymerization that indicate cell contraction, accompanied by enhanced GJs function on HUASMCs. With the inhibition of Cx43 GJs by the specific inhibitor, Gap26, and Cx43-siRNA, Ang Ⅱ-induced F-actin polymerization was reversed accompanied with the decrease of intracellular Ca 2+ mobility and the RhoA/LIMK2/Cofilin signaling pathway activity. We also noticed that propofol application could inhibit GJs function, the same as Gap26. Simultaneously, intracellular Ca 2+ mobility and RhoA/LIMK2/Cofilin signaling pathway activity on HUASMCs were both downregulated, finally resulting in downstream reduction of F-actin polymerization. Conclusion The function of Cx43-GJs lies in the center of Ang Ⅱ-induced contraction of HUASMC

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