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人类连接蛋白40突变会减缓传导并增加房颤倾向。

Human Connexin40 Mutations Slow Conduction and Increase Propensity for Atrial Fibrillation.

作者信息

Kanthan Ajita, Fahmy Peter, Rao Renuka, Pouliopoulos Jim, Alexander Ian E, Thomas Stuart P, Kizana Eddy

机构信息

Department of Cardiology, Westmead Hospital, Sydney, NSW, Australia; Westmead Institute for Medical Research, Sydney, NSW, Australia; The University of Sydney, Sydney, NSW, Australia.

Department of Cardiology, Westmead Hospital, Sydney, NSW, Australia; Westmead Institute for Medical Research, Sydney, NSW, Australia; The University of Sydney, Sydney, NSW, Australia.

出版信息

Heart Lung Circ. 2018 Jan;27(1):114-121. doi: 10.1016/j.hlc.2017.02.010. Epub 2017 Mar 21.

Abstract

BACKGROUND

Patch clamping studies using non-cardiomyocytes revealed that the human connexin40 mutations P88S, G38D, and A96S are associated with reduced gap junction conductances compared to wild type connexin40 (wtCx40). Their effects within myocytes however are unclear. We aimed to characterise P88S, G38D, and A96S after expression in rat hearts and primary cardiomyocyte cultures.

METHODS

Adult Sprague-Dawley rat atria were transduced with a lentivector containing a transgene encoding wtCx40, P88S, G38D, A96S, or eGFP (n=6 per transgene). Electrophysiology studies (EPS) were performed just prior to and 7 days after surgery. Left atria were assessed for connexin expression, mRNA levels, inflammation and fibrosis. Primary cardiomyocyte cultures were also transduced with the abovementioned vectors (n=6 per transgene) and monolayer conduction velocities (CV) and protein expression were assessed at 96hours.

RESULTS

At day 7 EPS, P wave and induced atrial fibrillation (AF) durations were significantly longer in the mutant groups when compared to wtCx40 controls (p<0.05). There were no significant differences in inflammation, fibrosis, or heart to body weight ratios. Monolayer CV's were reduced in the A96S group compared to the wtCx40 group. While similar to wtCx40 controls, P88S velocities were reduced compared to eGFP controls. G38D monolayers possessed spontaneous fibrillatory activity and could not be paced. Immunofluorescence revealed that P88S and G38D reduced native connexin43 myocyte coupling while A96S appeared to co-localise with connexin43 in gap junctions. Connexin43 mRNA levels were similar between groups.

CONCLUSIONS

The A96S, G38D, and P88S Cx40 mutations slow conduction and increased the propensity for inducible AF.

摘要

背景

使用非心肌细胞的膜片钳研究表明,与野生型连接蛋白40(wtCx40)相比,人类连接蛋白40突变P88S、G38D和A96S与缝隙连接电导降低有关。然而,它们在心肌细胞内的作用尚不清楚。我们旨在对大鼠心脏和原代心肌细胞培养物中表达的P88S、G38D和A96S进行表征。

方法

用含有编码wtCx40、P88S、G38D、A96S或eGFP的转基因的慢病毒载体转导成年Sprague-Dawley大鼠心房(每个转基因n = 6)。在手术前和手术后7天进行电生理研究(EPS)。评估左心房的连接蛋白表达、mRNA水平、炎症和纤维化。还用上述载体转导原代心肌细胞培养物(每个转基因n = 6),并在96小时时评估单层传导速度(CV)和蛋白质表达。

结果

在第7天的EPS中,与wtCx40对照组相比,突变组的P波和诱发性心房颤动(AF)持续时间明显更长(p<0.05)。炎症、纤维化或心脏与体重比没有显著差异。与wtCx40组相比,A96S组的单层CV降低。虽然与wtCx40对照组相似,但与eGFP对照组相比,P88S速度降低。G38D单层具有自发的纤维性颤动活动,无法起搏。免疫荧光显示,P88S和G38D减少了天然连接蛋白43心肌细胞的耦合,而A96S似乎在缝隙连接中与连接蛋白43共定位。各组之间连接蛋白43 mRNA水平相似。

结论

A96S、G38D和P88S Cx40突变减慢传导并增加诱发性AF的倾向。

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