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心脏线粒体在空间上不同亚群中的生理和结构差异:心脏病理学的影响。

Physiological and structural differences in spatially distinct subpopulations of cardiac mitochondria: influence of cardiac pathologies.

出版信息

Am J Physiol Heart Circ Physiol. 2014 Jul 1;307(1):H1-14. doi: 10.1152/ajpheart.00747.2013.

Abstract

Cardiac tissue contains discrete pools of mitochondria that are characterized by their subcellular spatial arrangement. Subsarcolemmal mitochondria (SSM) exist below the cell membrane, interfibrillar mitochondria (IFM) reside in rows between the myofibrils, and perinuclear mitochondria are situated at the nuclear poles. Microstructural imaging of heart tissue coupled with the development of differential isolation techniques designed to sequentially separate spatially distinct mitochondrial subpopulations have revealed differences in morphological features including shape, absolute size, and internal cristae arrangement. These findings have been complemented by functional studies indicating differences in biochemical parameters and, potentially, functional roles for the ATP generated, based upon subcellular location. Consequently, mitochondrial subpopulations appear to be influenced differently during cardiac pathologies including ischemia/reperfusion, heart failure, aging, exercise, and diabetes mellitus. These influences may be the result of specific structural and functional disparities between mitochondrial subpopulations such that the stress elicited by a given cardiac insult differentially impacts subcellular locales and the mitochondria contained within. The goal of this review is to highlight some of the inherent structural and functional differences that exist between spatially distinct cardiac mitochondrial subpopulations as well as provide an overview of the differential impact of various cardiac pathologies on spatially distinct mitochondrial subpopulations. As an outcome, we will instill a basis for incorporating subcellular spatial location when evaluating the impact of cardiac pathologies on the mitochondrion. Incorporation of subcellular spatial location may offer the greatest potential for delineating the influence of cardiac pathology on this critical organelle.

摘要

心肌组织包含离散的线粒体池,其特征在于亚细胞空间排列。细胞膜下的线粒体(SSM)存在于细胞膜下方,肌原纤维之间的线粒体(IFM)位于肌原纤维之间,核周线粒体位于核两极。心脏组织的微观结构成像与旨在顺序分离空间上不同的线粒体亚群的差分分离技术的发展相结合,揭示了形态特征的差异,包括形状、绝对大小和内部嵴排列。这些发现得到了功能研究的补充,表明基于亚细胞位置,生化参数和潜在的功能作用存在差异。因此,在线粒体亚群在包括缺血/再灌注、心力衰竭、衰老、运动和糖尿病在内的心脏病理中似乎受到不同的影响。这些影响可能是由于线粒体亚群之间存在特定的结构和功能差异,使得给定的心脏损伤引起的应激以不同的方式影响亚细胞位置和包含的线粒体。本综述的目的是强调空间上不同的心脏线粒体亚群之间存在的一些固有结构和功能差异,并概述各种心脏病理对空间上不同的线粒体亚群的不同影响。作为结果,我们将为评估心脏病理对线粒体的影响时纳入亚细胞空间位置奠定基础。纳入亚细胞空间位置可能为阐明心脏病理对这个关键细胞器的影响提供最大的潜力。

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