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小鼠心房横向轴突小管系统的异质性:心房特异性钠钙交换体基因敲除小鼠中的重塑。

Heterogeneity of transverse-axial tubule system in mouse atria: Remodeling in atrial-specific Na-Ca exchanger knockout mice.

作者信息

Yue Xin, Zhang Rui, Kim Brian, Ma Aiqun, Philipson Kenneth D, Goldhaber Joshua I

机构信息

Department of Cardiovascular Medicine, First Affiliated Hospital of Xi'an Jiaotong University, No. 277 West Yanta Road, Xi'an, Shaanxi 710061, China; Cedars-Sinai Heart Institute, Division of Applied Cell Biology and Physiology, 8700 Beverly Blvd., Los Angeles, CA 90048, USA.

Cedars-Sinai Heart Institute, Division of Applied Cell Biology and Physiology, 8700 Beverly Blvd., Los Angeles, CA 90048, USA.

出版信息

J Mol Cell Cardiol. 2017 Jul;108:50-60. doi: 10.1016/j.yjmcc.2017.05.008. Epub 2017 May 19.

Abstract

Transverse-axial tubules (TATs) are commonly assumed to be sparse or absent in atrial myocytes from small animals. Atrial myocytes from rats, cats and rabbits lack TATs, which results in a characteristic "V"-shaped Ca release pattern in confocal line-scan recordings due to the delayed rise of Ca in the center of the cell. To examine TAT expression in isolated mouse atrial myocytes, we loaded them with the membrane dye Di-4-ANEPPS to label TATs. We found that >80% of atrial myocytes had identifiable TATs. Atria from male mice had a higher TAT density than female mice, and TAT density correlated with cell width. Using the fluorescent Ca indicator Fluo-4-AM and confocal imaging, we found that wild type (WT) mouse atrial myocytes generate near-synchronous Ca transients, in contrast to the "V"-shaped pattern typically reported in other small animals such as rat. In atrial-specific Na-Ca exchanger (NCX) knockout (KO) mice, which develop sinus node dysfunction and atrial hypertrophy with dilation, we found a substantial loss of atrial TATs in isolated atrial myocytes. There was a greater loss of transverse tubules compared to axial tubules, resulting in a dominance of axial tubules. Consistent with the overall loss of TATs, NCX KO atrial myocytes displayed a "V"-shaped Ca transient with slower and reduced central (CT) Ca release and uptake in comparison to subsarcolemmal (SS) Ca release. We compared chemically detubulated (DT) WT cells to KO, and found similar slowing of CT Ca release and uptake. However, SS Ca transients in the WT DT cells had faster uptake kinetics than KO cells, consistent with the presence of NCX and normal sarcolemmal Ca efflux in the WT DT cells. We conclude that the remodeling of NCX KO atrial myocytes is accompanied by a loss of TATs leading to abnormal Ca release and uptake that could impact atrial contractility and rhythm.

摘要

横向轴突管(TATs)通常被认为在小动物的心房肌细胞中稀疏或不存在。大鼠、猫和兔子的心房肌细胞缺乏TATs,这导致在共聚焦线扫描记录中出现特征性的“V”形钙释放模式,原因是细胞中心的钙上升延迟。为了检测分离的小鼠心房肌细胞中TAT的表达,我们用膜染料Di-4-ANEPPS加载细胞以标记TATs。我们发现超过80%的心房肌细胞有可识别的TATs。雄性小鼠的心房TAT密度高于雌性小鼠,且TAT密度与细胞宽度相关。使用荧光钙指示剂Fluo-4-AM和共聚焦成像,我们发现野生型(WT)小鼠心房肌细胞产生近同步的钙瞬变,这与通常在大鼠等其他小动物中报道的“V”形模式形成对比。在心房特异性钠钙交换体(NCX)基因敲除(KO)小鼠中,这些小鼠会发展为窦房结功能障碍和伴有扩张的心房肥大,我们发现分离的心房肌细胞中大量的心房TATs丢失。与轴突管相比,横向管的丢失更严重,导致轴突管占主导。与TATs的整体丢失一致,与肌膜下(SS)钙释放相比,NCX KO心房肌细胞显示出“V”形钙瞬变,中央(CT)钙释放和摄取更慢且减少。我们将化学去管化(DT)的WT细胞与KO细胞进行比较,发现CT钙释放和摄取有类似的减慢。然而,WT DT细胞中的SS钙瞬变具有比KO细胞更快的摄取动力学,这与WT DT细胞中存在NCX和正常的肌膜钙外流一致。我们得出结论,NCX KO心房肌细胞的重塑伴随着TATs的丢失,导致钙释放和摄取异常,这可能影响心房收缩力和节律。

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