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快速起搏降低大鼠左心室心肌细胞 L 型钙电流并改变 Cacna1c 同基因表达。

Rapid Pacing Decreases L-type Ca Current and Alters Cacna1c Isogene Expression in Primary Cultured Rat Left Ventricular Myocytes.

机构信息

Institut für Zelluläre und Molekulare Physiologie, Friedrich-Alexander-Universität Erlangen-Nürnberg, Waldstraße 6, 91054, Erlangen, Germany.

Muscle Research Center Erlangen (MURCE), Friedrich-Alexander-Universität Erlangen-Nürnberg, 91054, Erlangen, Germany.

出版信息

J Membr Biol. 2023 Jun;256(3):257-269. doi: 10.1007/s00232-023-00284-y. Epub 2023 Mar 30.

Abstract

The L-type calcium current (I) is the first step in cardiac excitation-contraction-coupling and plays an important role in regulating contractility, but also in electrical and mechanical remodeling. Primary culture of cardiomyocytes, a widely used tool in cardiac ion channel research, is associated with substantial morphological, functional and electrical changes some of which may be prevented by electrical pacing. We therefore investigated I directly after cell isolation and after 24 h of primary culture with and without regular pacing at 1 and 3 Hz in rat left ventricular myocytes. Moreover, we analyzed total mRNA expression of the pore forming subunit of the L-type Ca channel (cacna1c) as well as the expression of splice variants of its exon 1 that contribute to specificity of I in different tissue such as cardiac myocytes or smooth muscle. 24 h incubation without pacing decreased I density by ~ 10% only. Consistent with this decrease we observed a decrease in the expression of total cacna1c and of exon 1a, the dominant variant of cardiomyocytes, while expression of exon 1b and 1c increased. Pacing for 24 h at 1 and 3 Hz led to a substantial decrease in I density by 30%, mildly slowed I inactivation and shifted steady-state inactivation to more negative potentials. Total cacna1c mRNA expression was substantially decreased by pacing, as was the expression of exon 1b and 1c. Taken together, electrical silence introduces fewer alterations in I density and cacna1c mRNA expression than pacing for 24 h and should therefore be the preferred approach for primary culture of cardiomyocytes.

摘要

L 型钙电流(I)是心脏兴奋-收缩偶联的第一步,在调节收缩性方面发挥着重要作用,但也在电和机械重塑中发挥作用。原代心肌细胞培养是心脏离子通道研究中广泛使用的工具,与一些可能通过电起搏预防的形态、功能和电变化有关。因此,我们在细胞分离后直接研究 I,并在 1Hz 和 3Hz 下进行 24 小时原代培养,同时进行和不进行常规起搏,以研究大鼠左心室心肌细胞。此外,我们分析了 L 型钙通道形成亚基(cacna1c)的总 mRNA 表达,以及其外显子 1 的剪接变体的表达,这些变体有助于 I 在不同组织(如心肌细胞或平滑肌)中的特异性。没有起搏的 24 小时孵育仅使 I 密度降低约 10%。与这种减少一致,我们观察到总 cacna1c 和外显子 1a 的表达减少,外显子 1a 是心肌细胞的主要变体,而外显子 1b 和 1c 的表达增加。在 1Hz 和 3Hz 起搏 24 小时会导致 I 密度大幅降低 30%,轻度减缓 I 失活,并将稳态失活转移到更负的电位。起搏会导致总 cacna1c mRNA 表达大幅减少,外显子 1b 和 1c 的表达也是如此。总之,电沉默比起搏 24 小时对 I 密度和 cacna1c mRNA 表达的改变更小,因此应该是心肌细胞原代培养的首选方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a559/10219890/46ba1bf2089d/232_2023_284_Fig1_HTML.jpg

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