接触是重要的一步:控制细胞器接触部位的代谢。

Robin W Klemm
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引用次数: 2

摘要

代谢途径通常分布在几个细胞器上,需要通过控制细胞器通信来实现功能整合。物理细胞器接触点已成为细胞代谢调节的关键枢纽,但直到最近,对细胞器界面形成或调节的分子机制的理解相对有限。线粒体是合成代谢和分解代谢途径的中心细胞器,因此与许多其他细胞室相互作用,包括内质网(ER)和脂滴(ld)。最近一组有趣的工作揭示了形成这些接触位点的分子基础。这篇简短的综述描述了内质网、线粒体和ld之间的接触位点在棕色和白色脂肪细胞储存脂质的重新合成中意想不到的功能的发现。有趣的是,介导这些细胞器之间相互作用的因子受到新发现的Phospho-FFAT基序意想不到的调节模式的影响。这些结果表明细胞器之间的接触位点是动态调节的,表明细胞器在细胞内的空间组织有助于代谢的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Getting in Touch Is an Important Step: Control of Metabolism at Organelle Contact Sites.

Metabolic pathways are often spread over several organelles and need to be functionally integrated by controlled organelle communication. Physical organelle contact-sites have emerged as critical hubs in the regulation of cellular metabolism, but the molecular understanding of mechanisms that mediate formation or regulation of organelle interfaces was until recently relatively limited. Mitochondria are central organelles in anabolic and catabolic pathways and therefore interact with a number of other cellular compartments including the endoplasmic reticulum (ER) and lipid droplets (LDs). An interesting set of recent work has shed new light on the molecular basis forming these contact sites. This brief overview describes the discovery of unanticipated functions of contact sites between the ER, mitochondria and LDs in de novo synthesis of storage lipids of brown and white adipocytes. Interestingly, the factors involved in mediating the interaction between these organelles are subject to unexpected modes of regulation through newly uncovered Phospho-FFAT motifs. These results suggest dynamic regulation of contact sites between organelles and indicate that spatial organization of organelles within the cell contributes to the control of metabolism.

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