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What is the function of mitochondrial networks? A theoretical assessment of hypotheses and proposal for future research

机译:线粒体网络的功能是什么?假设的理论评估和未来研究的建议

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摘要

Mitochondria can change their shape from discrete isolated organelles to a large continuous reticulum. The cellular advantages underlying these fused networks are still incompletely understood. In this paper, we describe and compare hypotheses regarding the function of mitochondrial networks. We use mathematical and physical tools both to investigate existing hypotheses and to generate new ones, and we suggest experimental and modelling strategies. Among the novel insights we underline from this work are the possibilities that (i) selective mitophagy is not required for quality control because selective fusion is sufficient; (ii) increased connectivity may have non-linear effects on the diffusion rate of proteins; and (iii) fused networks can act to dampen biochemical fluctuations. We hope to convey to the reader that quantitative approaches can drive advances in the understanding of the physiological advantage of these morphological changes.
机译:线粒体可以将其形状从离散的孤立细胞器改变为连续的大网状细胞。这些融合网络背后的蜂窝优势仍未完全理解。在本文中,我们描述并比较了有关线粒体网络功能的假设。我们使用数学和物理工具研究现有的假设并生成新的假设,并提出实验和建模策略。我们从这项工作中强调的新颖见解包括以下可能性:(i)由于选择性融合就足够了,因此质量控制不需要选择性线粒体; (ii)连接性的增强可能对蛋白质的扩散速率产生非线性影响; (iii)融合网络可以起到抑制生化波动的作用。我们希望向读者传达定量方法可以推动对这些形态变化的生理优势的了解。

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