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自组织:细胞生物学的基础。

Self-organization: the fundament of cell biology.

机构信息

Excellence cluster Cells in Motion (CiM), Westfalische Wilhelms-Universitat Münster, 48149 Münster, Germany

出版信息

Philos Trans R Soc Lond B Biol Sci. 2018 May 26;373(1747). doi: 10.1098/rstb.2017.0103.

Abstract

Self-organization refers to the emergence of an overall order in time and space of a given system that results from the collective interactions of its individual components. This concept has been widely recognized as a core principle in pattern formation for multi-component systems of the physical, chemical and biological world. It can be distinguished from self-assembly by the constant input of energy required to maintain order-and self-organization therefore typically occurs in non-equilibrium or dissipative systems. Cells, with their constant energy consumption and myriads of local interactions between distinct proteins, lipids, carbohydrates and nucleic acids, represent the perfect playground for self-organization. It therefore comes as no surprise that many properties and features of self-organized systems, such as spontaneous formation of patterns, nonlinear coupling of reactions, bi-stable switches, waves and oscillations, are found in all aspects of modern cell biology. Ultimately, self-organization lies at the heart of the robustness and adaptability found in cellular and organismal organization, and hence constitutes a fundamental basis for natural selection and evolution.This article is part of the theme issue 'Self-organization in cell biology'.

摘要

自组织是指给定系统在时间和空间中出现的整体有序性,它是由其各个组成部分的集体相互作用产生的。这一概念已被广泛认为是物理、化学和生物世界多组分系统中模式形成的核心原则。它可以通过维持秩序所需的不断输入能量与自组装区分开来,因此自组织通常发生在非平衡或耗散系统中。细胞以其持续的能量消耗和不同蛋白质、脂质、碳水化合物和核酸之间无数的局部相互作用为特征,是自组织的完美场所。因此,毫不奇怪,自组织系统的许多特性和特征,如模式的自发形成、反应的非线性耦合、双稳态开关、波和振荡,都存在于现代细胞生物学的各个方面。最终,自组织是细胞和生物组织中发现的稳健性和适应性的核心,因此构成了自然选择和进化的基础。本文是“细胞生物学中的自组织”主题特刊的一部分。

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Controlling compartmentalization by non-membrane-bound organelles.通过非膜结合细胞器控制区室化。
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Lipid self-assembly and lectin-induced reorganization of the plasma membrane.脂质自组装和凝集素诱导的质膜重排。
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Rhythmicity and waves in the cortex of single cells.皮层中单细胞的节律性和波。
Philos Trans R Soc Lond B Biol Sci. 2018 May 26;373(1747). doi: 10.1098/rstb.2017.0116.
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Self-organization across scales: from molecules to organisms.自组织跨越多个尺度:从分子到生物体。
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Fluid flows shaping organism morphology.流体流动塑造生物形态。
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