The main sources of molecular organization in the cell. Atlas of self-organized and self-regulated dynamic biostructures.

IF 3.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Progress in Biophysics & Molecular Biology Pub Date : 2025-01-11 DOI:10.1016/j.pbiomolbio.2025.01.003
Ildefonso M De la Fuente, Jesus M Cortes, Iker Malaina, Gorka Pérez-Yarza, Luis Martinez, José I López, Maria Fedetz, Jose Carrasco-Pujante
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Abstract

One of the most important goals of contemporary biology is to understand the principles of the molecular order underlying the complex dynamic architecture of cells. Here, we present an overview of the main driving forces involved in the cellular molecular complexity and in the emergent functional dynamic structures, spanning from the most basic molecular organization levels to the complex emergent integrative systemic behaviors. First, we address the molecular information processing which is essential in many complex fundamental mechanisms such as the epigenetic memory, alternative splicing, regulation of transcriptional system, and the adequate self-regulatory adaptation to the extracellular environment. Next, we approach the biochemical self-organization, which is central to understand the emergency of metabolic rhythms, circadian oscillations, and spatial traveling waves. Such a complex behavior is also fundamental to understand the temporal compartmentalization of the cellular metabolism and the dynamic regulation of many physiological activities. Numerous examples of biochemical self-organization are considered here, which show that practically all the main physiological processes in the cell exhibit this type of dynamic molecular organization. Finally, we focus on the biochemical self-assembly which, at a primary level of organization, is a basic but important mechanism for the order in the cell allowing biomolecules in a disorganized state to form complex aggregates necessary for a plethora of essential structures and physiological functions. In total, more than 500 references have been compiled in this review. Due to these main sources of order, systemic functional structures emerge in the cell, driving the metabolic functionality towards the biological complexity.

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细胞中分子组织的主要来源。自组织和自我调节的动态生物结构图谱。
当代生物学最重要的目标之一是了解细胞复杂动态结构所依据的分子秩序原理。在此,我们将概述细胞分子复杂性和新出现的功能动态结构所涉及的主要驱动力,其范围从最基本的分子组织水平到复杂的新出现的整合系统行为。首先,我们讨论了分子信息处理,这在许多复杂的基本机制中至关重要,如表观遗传记忆、替代剪接、转录系统调控以及对细胞外环境的充分自我调节适应。接下来,我们将探讨生化自组织,它是理解新陈代谢节律、昼夜节律振荡和空间行波紧急状况的核心。这种复杂的行为也是理解细胞新陈代谢的时间区隔和许多生理活动的动态调节的基础。本文列举了大量生化自组织的实例,表明细胞中几乎所有的主要生理过程都表现出这种动态分子组织。最后,我们将重点放在生化自组装上,在初级组织水平上,它是细胞秩序的一个基本而重要的机制,允许处于无序状态的生物分子形成大量基本结构和生理功能所需的复杂聚集体。本综述共收集了 500 多篇参考文献。由于这些主要的秩序来源,细胞中出现了系统的功能结构,推动新陈代谢功能向生物复杂性发展。
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来源期刊
Progress in Biophysics & Molecular Biology
Progress in Biophysics & Molecular Biology 生物-生化与分子生物学
CiteScore
8.60
自引率
7.90%
发文量
85
审稿时长
85 days
期刊介绍: Progress in Biophysics & Molecular Biology is an international review journal and covers the ground between the physical and biological sciences since its launch in 1950. It indicates to the physicist the great variety of unsolved problems awaiting attention in biology and medicine. The biologist and biochemist will find that this journal presents new and stimulating ideas and novel approaches to studying and influencing structural and functional properties of the living organism. This journal will be of particular interest to biophysicists, biologists, biochemists, cell physiologists, systems biologists, and molecular biologists.
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