Pharmacology of cardiovascular gap junctions.

Jean-Claude Hervé, Stefan Dhein
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引用次数: 25

Abstract

Gap junction (GJ) channels play an important role in forming a functional network or syncytium of cells by allowing the transfer of small molecules or the conduction of electrical activation. These channels can be regulated at the level of acute opening or closure as well as at the level of expression including synthesis, protein trafficking and degradation. Many of the underlying mechanisms depend on phosphorylation or dephosphorylation of connexins. A number of drugs is available to study GJ function and connexin expression. Some of these drugs have shown therapeutic effects, e.g. the anti-arrhythmic peptides AAP10 and ZP123 in the prevention of certain types of arrhythmia. Moreover, mediators involved in cardiovascular pathophysiology, e.g. angiotensin, endothelin, tumor necrosis factor-alpha, fibroblast growth factor and others, affect connexin expression and can alter the Cx43/Cx40 ratio, which may contribute to the formation of an arrhythmogenic substrate. On the other hand, drugs affecting these mediators may influence GJ networking and may thus open new therapeutic horizons.

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心血管间隙连接的药理学。
间隙连接(GJ)通道通过允许小分子的转移或电激活的传导,在形成细胞的功能网络或合胞体中起重要作用。这些通道可以在急性打开或关闭的水平上以及在表达水平上进行调节,包括合成、蛋白质运输和降解。许多潜在的机制依赖于连接蛋白的磷酸化或去磷酸化。许多药物可用于研究GJ功能和连接蛋白的表达。其中一些药物已经显示出治疗作用,例如抗心律失常肽AAP10和ZP123在预防某些类型的心律失常方面。此外,参与心血管病理生理的介质,如血管紧张素、内皮素、肿瘤坏死因子- α、成纤维细胞生长因子等,可影响连接素的表达,并可改变Cx43/Cx40的比值,这可能有助于心律失常底物的形成。另一方面,影响这些介质的药物可能影响GJ网络,从而可能开辟新的治疗领域。
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