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人类心脏间隙连接耦合:抗心律失常肽AAP10的作用

Human cardiac gap-junction coupling: effects of antiarrhythmic peptide AAP10.

作者信息

Hagen Anja, Dietze Anna, Dhein Stefan

机构信息

Clinic for Cardiac Surgery, University of Leipzig, Heart Centre, Strümpellstr. 39, 04289 Leipzig, Germany.

出版信息

Cardiovasc Res. 2009 Jul 15;83(2):405-15. doi: 10.1093/cvr/cvp028. Epub 2009 Jan 28.

Abstract

AIMS

Ventricular arrhythmia is one of the most important causes of death in industrialized countries and often accompanies myocardial infarction and heart failure. In recent years modification of gap-junctional coupling has been proposed as a new antiarrhythmic principle. We wanted to examine whether the gap junction modulator (antiarrhythmic peptide) AAP10 exerts effects on human cardiac gap junctions, whether the effect might be enhanced in uncoupled cells, whether it affects electrical and metabolic coupling, and which of the cardiac connexin isoforms (Cx40, Cx43, Cx45) may be affected.

METHODS AND RESULTS

We determined the influence of 50 nM AAP10 (H(2)N-Gly-Ala-Gly-4Hyp-Pro-Tyr-CONH(2)) on macroscopic gap junction conductance by dual whole-cell voltage clamping in human and rat cardiomyocytes. Cells were partially uncoupled by CO(2)-mediated acidosis (pH 6.3) or kept at 'normal' conditions (pH 7.4, T 36 degrees C). Furthermore, we investigated effects of AAP10 in HeLa cells stably transfected with connexin 40, 43, or 45 and on metabolic coupling determined by dye transfer (Lucifer yellow). AAP10 (50 nM)-enhanced gap-junctional intercellular coupling in human and rat cardiomyocytes, completely prevented CO(2)-acidosis-induced uncoupling and improved metabolic coupling. The coupling effect of AAP10 was significantly enhanced in previously uncoupled cells. Regarding the connexin isoforms, AAP10-enhanced electrical and metabolic coupling in HeLa cells expressing Cx43 or Cx45, but not in HeLa cells expressing Cx40.

CONCLUSION

We conclude that the antiarrhythmic peptide AAP10, which improves gap-junctional intercellular coupling and prevents uncoupling by acidification in human cardiomyocytes, might be useful for antiarrhythmic strategies regarding arrhythmias caused by uncoupling of Cx43 and Cx45, but not Cx40.

摘要

目的

室性心律失常是工业化国家最重要的死亡原因之一,常伴随心肌梗死和心力衰竭。近年来,间隙连接偶联的修饰已被提出作为一种新的抗心律失常原理。我们想研究间隙连接调节剂(抗心律失常肽)AAP10是否对人心脏间隙连接有影响,这种作用在未偶联细胞中是否会增强,它是否影响电偶联和代谢偶联,以及心脏连接蛋白亚型(Cx40、Cx43、Cx45)中的哪一种可能受到影响。

方法与结果

我们通过在人和大鼠心肌细胞中进行双全细胞膜片钳技术,测定了50 nM AAP10(H₂N - Gly - Ala - Gly - 4Hyp - Pro - Tyr - CONH₂)对宏观间隙连接电导的影响。细胞通过CO₂介导的酸中毒(pH 6.3)进行部分去偶联,或保持在“正常”条件下(pH 7.4,温度36℃)。此外,我们研究了AAP10对稳定转染连接蛋白40、43或45的HeLa细胞的影响,以及通过染料转移(荧光素黄)测定的对代谢偶联的影响。AAP10(50 nM)增强了人和大鼠心肌细胞中的间隙连接细胞间偶联,完全防止了CO₂酸中毒诱导的去偶联,并改善了代谢偶联。AAP10的偶联作用在先前未偶联的细胞中显著增强。关于连接蛋白亚型,AAP10增强了表达Cx43或Cx45的HeLa细胞中的电偶联和代谢偶联,但在表达Cx40的HeLa细胞中未增强。

结论

我们得出结论,抗心律失常肽AAP10可改善人心肌细胞中的间隙连接细胞间偶联并防止酸化导致的去偶联,可能对由Cx43和Cx45而非Cx40去偶联引起的心律失常的抗心律失常策略有用。

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