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鞘磷脂代谢控制着高尔基体潴泡的形状和功能。

Sphingomyelin metabolism controls the shape and function of the Golgi cisternae.

作者信息

Campelo Felix, van Galen Josse, Turacchio Gabriele, Parashuraman Seetharaman, Kozlov Michael M, García-Parajo María F, Malhotra Vivek

机构信息

ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, Barcelona, Spain.

Centre for Genomic Regulation, The Barcelona Institute of Science and Technology, Barcelona, Spain.

出版信息

Elife. 2017 May 13;6:e24603. doi: 10.7554/eLife.24603.

Abstract

The flat Golgi cisterna is a highly conserved feature of eukaryotic cells, but how is this morphology achieved and is it related to its function in cargo sorting and export? A physical model of cisterna morphology led us to propose that sphingomyelin (SM) metabolism at the -Golgi membranes in mammalian cells essentially controls the structural features of a Golgi cisterna by regulating its association to curvature-generating proteins. An experimental test of this hypothesis revealed that affecting SM homeostasis converted flat cisternae into highly curled membranes with a concomitant dissociation of membrane curvature-generating proteins. These data lend support to our hypothesis that SM metabolism controls the structural organization of a Golgi cisterna. Together with our previously presented role of SM in controlling the location of proteins involved in glycosylation and vesicle formation, our data reveal the significance of SM metabolism in the structural organization and function of Golgi cisternae.

摘要

扁平的高尔基体潴泡是真核细胞高度保守的特征,但这种形态是如何形成的,它与在货物分拣和输出中的功能有关吗?潴泡形态的物理模型使我们提出,哺乳动物细胞中高尔基体膜上的鞘磷脂(SM)代谢通过调节其与产生膜曲率的蛋白质的结合,从根本上控制了高尔基体潴泡的结构特征。对这一假设的实验验证表明,影响SM稳态会将扁平潴泡转变为高度卷曲的膜,同时膜曲率产生蛋白会解离。这些数据支持了我们的假设,即SM代谢控制着高尔基体潴泡的结构组织。结合我们之前提出的SM在控制参与糖基化和囊泡形成的蛋白质位置方面的作用,我们的数据揭示了SM代谢在高尔基体潴泡结构组织和功能中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b36/5462544/142e97f3aa32/elife-24603-fig1.jpg

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