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Effects of Macromolecular Crowding on Biochemical Systems

机译:大分子挤在生物化学系统上的影响

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摘要

Living cells are crowded. The presence of so many macromolecules packed into a confined environment affects the structure and function of biological components, and the kinetics and thermodynamics of biochemical reactions. In fact, crowding studies have already led to important biological insights, such as the existence of metabolons and other temporary protein complexes that play essential roles in metabolism, cell signaling, and organization of the intracellular environment. Even so, this important topic is rarely addressed in chemistry and biochemistry curricula. This review brings readers up to date on developments in the field of macromolecular crowding, with a special emphasis on distinguishing between the two major components of crowding: excluded volume effects (hard interactions) and chemical effects (soft interactions). Interestingly, because attractive soft interactions and repulsive hard interactions oppose each other, the net effects of crowding in vivo are often surprisingly. small. We present some background and theory, while summarizing recent literature. Finally, we include suggestions on how this topic might be incorporated into the biochemistry classroom or laboratory setting.
机译:活细胞很拥挤。填充到狭窄环境中的许多大分子的存在影响生物分量的结构和功能,以及生物化学反应的动力学和热力学。事实上,拥挤的研究已经导致了重要的生物洞察,例如弥扑药物的存在和其他临时蛋白质复合物,其在代谢,细胞信号传导和细胞内环境的组织中起重要作用。即便如此,这种重要的话题很少在化学和生物化学课程中解决。本综述达到读者迄今为止关于大分子拥挤领域的发展,特别强调区分挤拥挤的两个主要成分:排除体积效应(硬相互作用)和化学效果(软相互作用)。有趣的是,因为有吸引力的软互动和令人厌恶的硬相互作用相抗,众所周心的净效应往往令人惊讶。小的。我们展示了一些背景和理论,同时总结了最近的文献。最后,我们包括关于如何将本主题纳入生物化学课堂或实验室环境的建议。

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