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Subcellular connectomic analyses of energy networks in striated muscle

机译:横纹肌能量网络的亚细胞连接组学分析

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摘要

Mapping biological circuit connectivity has revolutionized our understanding of structure-function relationships. Although connectomic analyses have primarily focused on neural systems, electrical connectivity within muscle mitochondrial networks was recently demonstrated to provide a rapid mechanism for cellular energy distribution. However, tools to evaluate organelle connectivity with high spatial fidelity within single cells are currently lacking. Here, we developed a framework to quantitatively assess mitochondrial network connectivity and interactions with cellular sites of energy storage, utilization, and calcium cycling in cardiac, oxidative, and glycolytic muscle. We demonstrate that mitochondrial network configuration, individual mitochondrial size and shape, and the junctions connecting mitochondria within each network are consistent with the differing contraction demands of each muscle type. Moreover, mitochondria-lipid droplet interaction analyses suggest that individual mitochondria within networks may play specialized roles regarding energy distribution and calcium cycling within the cell and reveal the power of connectomic analyses of organelle interactions within single cells.
机译:映射生物电路连通性彻底改变了我们对结构-功能关系的理解。尽管连接组学分析主要集中在神经系统上,但是最近证明了肌肉线粒体网络内的电连接性为细胞能量分配提供了快速的机制。但是,目前缺乏用于评估单个细胞内具有高空间保真度的细胞器连通性的工具。在这里,我们开发了一个框架,用于定量评估线粒体网络的连通性以及与能量存储,利用和心肌,氧化和糖酵解肌肉中钙循环的细胞位置的相互作用。我们证明线粒体网络配置,单个线粒体的大小和形状,以及每个网络内连接线粒体的连接点与每种肌肉类型的不同收缩要求是一致的。此外,线粒体-脂滴相互作用分析表明,网络内的单个线粒体可能在细胞内的能量分布和钙循环方面起专门作用,并揭示了单细胞内细胞器相互作用的组学分析能力。

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