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质膜 Ca2+-ATPase 1 对于维持小鼠心房 Ca2+稳态和电生理稳定性是必需的。

Plasma membrane Ca -ATPase 1 is required for maintaining atrial Ca homeostasis and electrophysiological stability in the mouse.

机构信息

Department of Pharmacology, University of Oxford, Oxford, UK.

Division of Cardiovascular Sciences, Faculty of Biology, Medicine and Health, Manchester Academic Health Science Centre, University of Manchester, Manchester, UK.

出版信息

J Physiol. 2017 Dec 15;595(24):7383-7398. doi: 10.1113/JP274110. Epub 2017 Nov 9.

Abstract

KEY POINTS

The role of plasma membrane Ca -ATPase 1 (PMCA1) in Ca homeostasis and electrical stability in atrial tissue has been investigated at both organ and cellular levels in mice with cardiomyocyte-specific deletion of PMCA1 (PMCA1 ) The PMCA1 hearts became more susceptible to atrial arrhythmic stress conditions than PMCA1 hearts. PMCA1 deficiency alters cellular Ca homeostasis under both baseline and stress conditions. PMCA1 is required for maintaining cellular Ca homeostasis and electrical stability in murine atria under stress conditions.

ABSTRACT

To determine the role of plasma membrane Ca -ATPase 1 (PMCA1) in maintaining Ca homeostasis and electrical stability in the atrium under physiological and stress conditions, mice with a cardiomyocyte-specific deletion of PMCA1 (PMCA1 ) and their control littermates (PMCA1 ) were studied at the organ and cellular levels. At the organ level, the PMCA1 hearts became more susceptible to atrial arrhythmias under rapid programmed electrical stimulation compared with the PMCA1 hearts, and such arrhythmic events became more severe under Ca overload conditions. At the cellular level, the occurrence of irregular-type action potentials of PMCA1 atrial myocytes increased significantly under Ca overload conditions and/or at higher frequency of stimulation. The decay of Na /Ca exchanger current that followed a stimulation protocol was significantly prolonged in PMCA1 atrial myocytes under basal conditions, with Ca overload leading to even greater prolongation. In conclusion, PMCA1 is required for maintaining Ca homeostasis and electrical stability in the atrium. This is particularly critical during fast removal of Ca from the cytosol, which is required under stress conditions.

摘要

要点

在心肌细胞特异性敲除钙泵(PMCA1)的小鼠中,已在器官和细胞水平上研究了质膜 Ca2+-ATP 酶 1(PMCA1)在心脏钙离子稳态和电稳定性中的作用。与 PMCA1 心脏相比,PMCA1 心脏在心房颤动应激条件下变得更容易发生心律失常。PMCA1 缺乏会改变基础和应激条件下细胞内的钙离子稳态。PMCA1 是维持应激条件下小鼠心房细胞内钙离子稳态和电稳定性所必需的。

摘要

为了确定质膜 Ca2+-ATP 酶 1(PMCA1)在维持生理和应激条件下心房钙离子稳态和电稳定性中的作用,在器官和细胞水平上研究了心肌细胞特异性敲除 PMCA1(PMCA1)的小鼠及其对照同窝仔鼠(PMCA1)。在器官水平上,与 PMCA1 心脏相比,PMCA1 心脏在快速程控电刺激下更容易发生心房心律失常,并且在钙过载条件下,这种心律失常事件变得更加严重。在细胞水平上,在钙过载条件下和/或在更高的刺激频率下,PMCA1 心房肌细胞不规则型动作电位的发生显著增加。在基础条件下,PMCA1 心房肌细胞中的钠/钙交换电流的衰减在刺激后明显延长,而在钙过载条件下,这种延长更为明显。总之,PMCA1 是维持心房钙离子稳态和电稳定性所必需的。在应激条件下,从细胞质中快速去除 Ca2+时,这一点尤为关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/825f/5730856/5c385da96d31/TJP-595-7383-g001.jpg

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