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Wolfram蛋白缺陷大鼠心肌细胞中的钙信号与收缩性

Calcium Signaling and Contractility in Cardiac Myocyte of Wolframin Deficient Rats.

作者信息

Cagalinec Michal, Zahradníková Alexandra, Zahradníková Alexandra, Kováčová Dominika, Paulis Ludovit, Kureková Simona, Hot'ka Matej, Pavelková Jana, Plaas Mario, Novotová Marta, Zahradník Ivan

机构信息

Department of Cellular Cardiology, Institute of Experimental Endocrinology, Biomedical Research Center, University Science Park for Biomedicine, Slovak Academy of Sciences, Bratislava, Slovakia.

Institute of Molecular Physiology and Genetics, Centre of Biosciences, Slovak Academy of Sciences, Bratislava, Slovakia.

出版信息

Front Physiol. 2019 Mar 13;10:172. doi: 10.3389/fphys.2019.00172. eCollection 2019.

Abstract

Wolframin (Wfs1) is a membrane protein of the sarco/endoplasmic reticulum. Wfs1 mutations are responsible for the Wolfram syndrome, characterized by diabetic and neurological symptoms. Although Wfs1 is expressed in cardiac muscle, its role in this tissue is not clear. We have characterized the effect of invalidation of Wfs1 on calcium signaling-related processes in isolated ventricular myocytes of exon5-Wfs1 deficient rats (Wfs1) before the onset of overt disease. Calcium transients and contraction were measured in field-stimulated isolated myocytes using confocal microscopy with calcium indicator fluo-3 AM and sarcomere length detection. Calcium currents and their calcium release-dependent inactivation were characterized in whole-cell patch-clamp experiments. At 4 months, Wfs1 animals were euglycemic, and echocardiographic examination revealed fully compensated cardiac function. In field-stimulated isolated ventricular myocytes, both the amplitude and the duration of contraction of Wfs1 animals were elevated relative to control Wfs1 littermates. Increased contractility of myocytes resulted largely from prolonged cytosolic calcium transients. Neither the amplitude of calcium currents nor their voltage dependence of activation differed between the two groups. Calcium currents in Wfs1 myocytes showed a larger extent of inactivation by short voltage prepulses applied to selectively induce calcium release-dependent inactivation of calcium current. Neither the calcium content of the sarcoplasmic reticulum, measured by application of 20 mmol/l caffeine, nor the expression of SERCA2, determined from Western blots, differed significantly in myocytes of Wfs1 animals compared to control ones. These experiments point to increased duration of calcium release in ventricular myocytes of Wfs1 animals. We speculate that the lack of functional wolframin might cause changes leading to upregulation of RyR2 channels resulting in prolongation of channel openings and/or a delay in termination of calcium release.

摘要

沃尔弗拉姆蛋白(Wfs1)是肌浆网/内质网的一种膜蛋白。Wfs1突变是导致沃尔弗拉姆综合征的原因,该综合征的特征为糖尿病和神经症状。尽管Wfs1在心肌中表达,但其在该组织中的作用尚不清楚。我们已经在明显疾病发作前,对敲除外显子5-Wfs1的大鼠(Wfs1)分离的心室肌细胞中Wfs1缺失对钙信号相关过程的影响进行了表征。使用钙指示剂fluo-3 AM和肌节长度检测的共聚焦显微镜,在电场刺激的分离肌细胞中测量钙瞬变和收缩。在全细胞膜片钳实验中表征钙电流及其钙释放依赖性失活。在4个月时,Wfs1动物血糖正常,超声心动图检查显示心脏功能完全代偿。在电场刺激的分离心室肌细胞中,与对照Wfs1同窝小鼠相比,Wfs1动物的收缩幅度和持续时间均升高。肌细胞收缩性增加主要源于胞质钙瞬变延长。两组之间钙电流的幅度及其激活的电压依赖性均无差异。Wfs1肌细胞中的钙电流在施加短电压预脉冲以选择性诱导钙电流的钙释放依赖性失活时,显示出更大程度的失活。与对照相比,Wfs1动物的肌细胞中,通过施加20 mmol/l咖啡因测量的肌浆网钙含量以及通过蛋白质免疫印迹法测定的SERCA2表达均无显著差异。这些实验表明Wfs1动物心室肌细胞中钙释放持续时间增加。我们推测功能性沃尔弗拉姆蛋白的缺乏可能导致变化,从而导致RyR2通道上调,导致通道开放延长和/或钙释放终止延迟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7467/6425137/5998dfb8420a/fphys-10-00172-g001.jpg

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