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线粒体动力学:塑造代谢适应。

Mitochondrial Dynamics: Shaping Metabolic Adaptation.

机构信息

Nestle Institute of Health Sciences NIHS, Lausanne, Switzerland; School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

Int Rev Cell Mol Biol. 2018;340:129-167. doi: 10.1016/bs.ircmb.2018.05.004. Epub 2018 Jun 22.

Abstract

Despite their classic bean-shaped depiction, mitochondria have very different aspects in each cell type. From long filamentous structures to punctuated small round organelles. These shapes can dynamically change in response to nutrients and in situations of metabolic disease. However, why do mitochondria adapt different shapes and how is this determined? In this review, we will aim to understand different visions on how metabolic cues influence mitochondrial shape and vice-versa. This response can be dramatically different between tissues and cells, as illustrated by a large array of genetically engineered mouse models reported to date. We will use these models to understand the role of different mitochondrial dynamics-related proteins and processes.

摘要

尽管线粒体在经典上呈现出豆形,但在每种细胞类型中它们具有非常不同的形态。从长丝状结构到点状的小圆形细胞器。这些形状可以根据营养物质和代谢疾病的情况动态变化。然而,为什么线粒体适应不同的形状,以及这种形状是如何决定的呢?在这篇综述中,我们将旨在理解代谢线索如何影响线粒体形状,反之亦然的不同观点。到目前为止,通过大量报道的基因工程小鼠模型可以清楚地看到,这种反应在组织和细胞之间可以有很大的不同。我们将使用这些模型来了解不同的线粒体动力学相关蛋白和过程的作用。

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