原代培养的大鼠肠系膜平滑肌细胞中的细胞间钙波是由 connexin43 介导的。

Q2 Biochemistry, Genetics and Molecular Biology
Nadia Halidi, Florian Alonso, Janis M Burt, Jean-Louis Bény, Jacques-Antoine Haefliger, Jean-Jacques Meister
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引用次数: 10

摘要

血管平滑肌细胞(SMC)之间的细胞间 Ca(2+)波传播与收缩沿血管的传播有关。在这里,我们从细胞水平描述了缝隙连接(GJs)参与血管平滑肌细胞间 Ca(2+)波传播的情况。通过在 A7r5 细胞、原代大鼠肠系膜 SMCs(pSMCs)和 6B5N 细胞(A7r5 细胞的克隆,表达较高的 connexin43(Cx43)与 Cx40 比率)中传播细胞间 Ca(2+)波和转移 Lucifer Yellow 来评估缝隙连接通信。机械刺激在 pSMC 和 6B5N 细胞中诱发了细胞内 Ca(2+) 波,并传播到邻近细胞,而 A7r5 细胞中的 Ca(2+) 波却不能传播到邻近细胞。我们证明了 Cx43 形成了参与介导细胞间 Ca(2+) 波的功能性 GJ,而 Cx40 与 Cx43 的共表达(取决于它们的表达比例)可能会干扰 Cx43 GJ 的形成,从而改变连接通讯。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intercellular calcium waves in primary cultured rat mesenteric smooth muscle cells are mediated by connexin43.

Intercellular Ca(2+) wave propagation between vascular smooth muscle cells (SMCs) is associated with the propagation of contraction along the vessel. Here, we characterize the involvement of gap junctions (GJs) in Ca(2+) wave propagation between SMCs at the cellular level. Gap junctional communication was assessed by the propagation of intercellular Ca(2+) waves and the transfer of Lucifer Yellow in A7r5 cells, primary rat mesenteric SMCs (pSMCs), and 6B5N cells, a clone of A7r5 cells expressing higher connexin43 (Cx43) to Cx40 ratio. Mechanical stimulation induced an intracellular Ca(2+) wave in pSMC and 6B5N cells that propagated to neighboring cells, whereas Ca(2+) waves in A7r5 cells failed to progress to neighboring cells. We demonstrate that Cx43 forms the functional GJs that are involved in mediating intercellular Ca(2+) waves and that co-expression of Cx40 with Cx43, depending on their expression ratio, may interfere with Cx43 GJ formation, thus altering junctional communication.

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来源期刊
Cell Communication and Adhesion
Cell Communication and Adhesion 生物-生化与分子生物学
CiteScore
2.50
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Cessation Cell Communication and Adhesion is an international Open Access journal which provides a central forum for research on mechanisms underlying cellular signalling and adhesion. The journal provides a single source of information concerning all forms of cellular communication, cell junctions, adhesion molecules and families of receptors from diverse biological systems. The journal welcomes submission of original research articles, reviews, short communications and conference reports.
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