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胆固醇、真核脂域和跨膜信号转导的进化视角。

Cholesterol, Eukaryotic Lipid Domains, and an Evolutionary Perspective of Transmembrane Signaling.

机构信息

Department of Basic Medical Sciences, Tsinghua-Peking University Joint Center for Life Sciences, School of Medicine; Institute for Immunology, Tsinghua University, Beijing 100084, China

Department of Microbiology, Immunology and Infectious Diseases, Snyder Institute, University of Calgary, Calgary, Alberta T2N 4Z6, Canada.

出版信息

Cold Spring Harb Perspect Biol. 2023 Nov 1;15(11):a041418. doi: 10.1101/cshperspect.a041418.

Abstract

Transmembrane signaling is essential for complex life forms. Communication across a bilayer lipid barrier is elaborately organized to convey precision and to fine-tune strength. Looking back, the steps that it has taken to enable this seemingly mundane errand are breathtaking, and with our survivorship bias, Darwinian. While this review is to discuss eukaryotic membranes in biological functions for coherence and theoretical footing, we are obliged to follow the evolution of the biological membrane through time. Such a visit is necessary for our hypothesis that constraints posited on cellular functions are mainly via the biomembrane, and relaxation thereof in favor of a coordinating membrane environment is the molecular basis for the development of highly specialized cellular activities, among them transmembrane signaling. We discuss the obligatory paths that have led to eukaryotic membrane formation, its intrinsic ability to signal, and how it set up the platform for later integration of protein-based receptor activation.

摘要

跨膜信号转导对于复杂的生命形式至关重要。双层脂质屏障的通讯经过精心组织,以传达精确性并微调信号强度。回顾历史,为了实现这一看似平凡的任务,它所经历的步骤令人惊叹,而这也是达尔文生存选择的结果。虽然本综述旨在讨论真核细胞膜在生物学功能中的作用,以保持连贯性和理论基础,但我们必须遵循生物膜随时间的进化。这种访问对于我们的假设是必要的,即细胞功能所受到的限制主要是通过生物膜施加的,而放松这种限制以有利于协调的膜环境是高度特化细胞活动发展的分子基础,其中包括跨膜信号转导。我们讨论了导致真核细胞膜形成的必需途径、其内在的信号转导能力,以及它如何为后来基于蛋白质的受体激活的整合搭建平台。

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