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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Sarcoplasmic Reticulum-Mitochondria Kissing in Cardiomyocytes: Ca2+, ATP, and Undisclosed Secrets
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Sarcoplasmic Reticulum-Mitochondria Kissing in Cardiomyocytes: Ca2+, ATP, and Undisclosed Secrets

机译:肌肉网状线粒体在心肌细胞中接吻:Ca2 +,ATP和未公开的秘密

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In cardiomyocytes, to carry out cell contraction, the distribution, morphology and dynamic interaction of different cellular organelles are tightly regulated. For instance, the repetitive close apposition between junctional sarcoplasmic reticulum (jSR) and specialized sarcolemma invaginations, called transverse-tubules (TTs), is essential for an efficient excitation-contraction coupling (ECC). Upon an action potential, Ca2+ microdomains, generated in synchrony at the interface between TTs and jSR, underlie the prompt increase in cytosolic Ca2+ concentration, ultimately responsible for cell contraction during systole. This process requires a considerable amount of energy and the active participation of mitochondria, which encompass ~30% of the cell volume and represent the major source of ATP in the heart. Importantly, in adult cardiomyocytes, mitochondria are distributed in a highly orderly fashion and strategically juxtaposed with SR. By taking advantage of the vicinity to Ca2+ releasing sites, they take up Ca2+ and modulate ATP synthesis according to the specific cardiac workload. Interestingly, with respect to SR, a biased, polarized positioning of mitochondrial Ca2+ uptake/efflux machineries has been reported, hinting the importance of a strictly regulated mitochondrial Ca2+ handling for heart activity. This notion, however, has been questioned by the observation that, in some mouse models, the deficiency of specific molecules, modulating mitochondrial Ca2+ dynamics, triggers non-obvious cardiac phenotypes. This review will briefly summarize the physiological significance of SR-mitochondria apposition in cardiomyocytes, as well as the pathological consequences of an altered organelle communication, focusing on Ca2+ signaling. We will discuss ongoing debates and propose future research directions.
机译:在心肌细胞中,为了进行细胞收缩,不同细胞细胞器的分布,形态和动态相互作用是紧密调节的。例如,结石肌肉网(JSR)与专门的Sarcolemma invaginations(称为横向小管(TTS)之间的重复近置链接对于有效激发 - 收缩偶联(ECC)至关重要。在动作电位,Ca2 +微氮粉末,在TTS和JSR之间的界面中的同步产生,下潜胞囊CA2 +浓度的提高,最终负责在收缩过程中的细胞收缩。该过程需要大量的能量和线粒体的积极参与,其包括〜30%的细胞体积,并代表心脏中ATP的主要来源。重要的是,在成人心肌细胞中,线粒体以高度有序的方式分布,并用SR策略性化并置。通过利用CA2 +释放网站的附近,它们根据特定的心脏工作量占用CA2 +并调节ATP合成。有趣的是,关于SR,已经报道了对线粒体CA2 +摄取/流出机械的偏置,偏振定位,暗示严格调节的线粒体CA2 +处理心脏活性的重要性。然而,这种概念已经受到观察到,在某些小鼠模型中,特定分子的缺陷,调节线粒体CA2 +动力学,触发非明显的心脏表型。本综述将简要概括SR-Mitochondria在心肌细胞中的生理意义,以及改变细胞器通信的病理后果,专注于CA2 +信号传导。我们将讨论正在进行的辩论并提出未来的研究方向。

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