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钙循环蛋白密度及其对分离的窦房结细胞自律性的功能重要性与细胞大小无关。

Calcium cycling protein density and functional importance to automaticity of isolated sinoatrial nodal cells are independent of cell size.

作者信息

Lyashkov Alexey E, Juhaszova Magdalena, Dobrzynski Halina, Vinogradova Tatiana M, Maltsev Victor A, Juhasz Ondrej, Spurgeon Harold A, Sollott Steven J, Lakatta Edward G

机构信息

Laboratory of Cardiovascular Science, Gerontology Research Center, NIA, NIH, Baltimore, Maryland 21224-6825, USA.

出版信息

Circ Res. 2007 Jun 22;100(12):1723-31. doi: 10.1161/CIRCRESAHA.107.153676. Epub 2007 May 24.

Abstract

Spontaneous, localized, rhythmic ryanodine receptor (RyRs) Ca(2+) releases occur beneath the cell membrane during late diastolic depolarization in cardiac sinoatrial nodal cells (SANCs). These activate the Na(+)/Ca(2+) exchanger (NCX1) to generate inward current and membrane excitation that drives normal spontaneous beating. The morphological background for the proposed functional of RyR and NCX crosstalk, however, has not been demonstrated. Here we show that the average isolated SANC whole cell labeling density of RyRs and SERCA2 is similar to atrial and ventricle myocytes, and is similar among SANCs of all sizes. Labeling of NCX1 is also similar among SANCs of all sizes and exceeds that in atrial and ventricle myocytes. Submembrane colocalization of NCX1 and cardiac RyR (cRyR) in all SANCs exceeds that in the other cell types. Further, the Cx43 negative primary pacemaker area of the intact rabbit sinoatrial node (SAN) exhibits robust positive labeling for cRyR, NCX1, and SERCA2. Functional studies in isolated SANCs show that neither the average action potential (AP) characteristics, nor those of intracellular Ca(2+) releases, nor the spontaneous cycle length vary with cell size. Chelation of intracellular [Ca(2+)], or disabling RyRs or NCX1, markedly attenuates or abolishes spontaneous SANC beating in all SANCs. Thus, there is dense labeling of SERCA2, RyRs, and NCX1 in small-sized SANCs, thought to reside within the SAN center, the site of impulse initiation. Because normal automaticity of these cells requires intact Ca(2+) cycling, interactions of SERCA, RyR2 and NCX molecules are implicated in the initiation of the SAN impulse.

摘要

在心脏窦房结细胞(SANC)舒张晚期去极化过程中,细胞膜下会自发出现局部有节律的兰尼碱受体(RyRs)钙(Ca²⁺)释放。这些释放激活钠/钙交换体(NCX1)以产生内向电流和膜兴奋,从而驱动正常的自发搏动。然而,RyR与NCX串扰所提出功能的形态学背景尚未得到证实。在此我们表明,RyRs和肌浆网钙ATP酶2(SERCA2)的平均分离SANC全细胞标记密度与心房和心室肌细胞相似,并且在所有大小的SANC中都相似。NCX1的标记在所有大小的SANC中也相似,且超过心房和心室肌细胞。所有SANC中NCX1与心脏RyR(cRyR)的膜下共定位超过其他细胞类型。此外,完整兔窦房结(SAN)的Cx43阴性初级起搏区域对cRyR、NCX1和SERCA2表现出强烈的阳性标记。对分离的SANC进行的功能研究表明,平均动作电位(AP)特征、细胞内钙(Ca²⁺)释放特征以及自发周期长度均不随细胞大小而变化。螯合细胞内[Ca²⁺],或使RyRs或NCX1失活,会显著减弱或消除所有SANC中的自发SANC搏动。因此,在被认为位于SAN中心(冲动起始部位)的小尺寸SANC中,SERCA2、RyRs和NCX1有密集标记。由于这些细胞的正常自律性需要完整的钙循环,SERCA、RyR2和NCX分子的相互作用与SAN冲动的起始有关。

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