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神经节苷脂在脂筏中对信号转导的调控:聚焦 GM3-IR 和 GM1-TrkA 相互作用。

Regulation of signal transduction by gangliosides in lipid rafts: focus on GM3-IR and GM1-TrkA interactions.

机构信息

Department of Medical Biotechnology and Translational Medicine, University of Milano, Italy.

出版信息

FEBS Lett. 2022 Dec;596(24):3124-3132. doi: 10.1002/1873-3468.14532. Epub 2022 Nov 11.

Abstract

The interactions between gangliosides and proteins belonging to the same or different lipid domains and their influence on physiological and pathological states have been analysed in detail. A well-known factor impacting on lipid-protein interactions and their biological outcomes is the dynamic composition of plasma membrane. This review focuses on GM1 and GM3 gangliosides because they are an integral part of protein-receptor complexes and dysregulation of their concentration shows a direct correlation with the onset of pathological conditions. We first discuss the interaction between GM3 and insulin receptor in relation to insulin responses, with an increase in GM3 correlating with the onset of metabolic dysfunction. Next, we describe the case of the GM1-TrkA interaction, relevant to nerve-cell differentiation and homeostasis as deficiency in plasma-membrane GM1 is known to promote neurodegeneration. These two examples highlight the fact that interactions between gangliosides and receptor proteins within the plasma membrane are crucial in controlling cell signalling and pathophysiological cellular states.

摘要

神经节苷脂与属于同一或不同脂质域的蛋白质之间的相互作用及其对生理和病理状态的影响已被详细分析。一个众所周知的影响脂质-蛋白质相互作用及其生物学结果的因素是质膜的动态组成。本综述重点介绍 GM1 和 GM3 神经节苷脂,因为它们是蛋白质-受体复合物的组成部分,其浓度的失调与病理状况的发生直接相关。我们首先讨论 GM3 与胰岛素受体之间的相互作用与胰岛素反应的关系,GM3 的增加与代谢功能障碍的发生相关。接下来,我们描述 GM1-TrkA 相互作用的情况,这与神经细胞分化和动态平衡有关,因为已知质膜 GM1 的缺乏会促进神经退行性变。这两个例子强调了一个事实,即质膜中神经节苷脂和受体蛋白之间的相互作用对于控制细胞信号转导和病理细胞状态至关重要。

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