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Sensing Size through Clustering in Non-Equilibrium Membranes and the Control of Membrane-Bound Enzymatic Reactions

机译:通过在非平衡膜中的聚集感测大小和膜结合酶反应的控制

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摘要

The formation of dynamical clusters of proteins is ubiquitous in cellular membranes and is in part regulated by the recycling of membrane components. We show, using stochastic simulations and analytic modeling, that the out-of-equilibrium cluster size distribution of membrane components undergoing continuous recycling is strongly influenced by lateral confinement. This result has significant implications for the clustering of plasma membrane proteins whose mobility is hindered by cytoskeletal “corrals” and for protein clustering in cellular organelles of limited size that generically support material fluxes. We show how the confinement size can be sensed through its effect on the size distribution of clusters of membrane heterogeneities and propose that this could be regulated to control the efficiency of membrane-bound reactions. To illustrate this, we study a chain of enzymatic reactions sensitive to membrane protein clustering. The reaction efficiency is found to be a non-monotonic function of the system size, and can be optimal for sizes comparable to those of cellular organelles.
机译:蛋白质的动态簇的形成在细胞膜中无处不在,并且部分地由膜成分的再循环调节。我们显示,使用随机模拟和分析模型,经历连续回收利用的膜组件的不平衡簇尺寸分布受到侧向约束的强烈影响。该结果对于细胞膜“皮质”阻碍其移动性的质膜蛋白的聚类以及通常支持物质通量的有限尺寸的细胞器中的蛋白聚类具有重要意义。我们展示了如何通过其对膜异质性簇簇的大小分布的影响来感知限制大小,并提出可以对其进行调节以控制膜结合反应的效率。为了说明这一点,我们研究了对膜蛋白簇敏感的一系列酶促反应。发现反应效率是系统大小的非单调函数,并且对于与细胞器大小相当的大小可能是最佳的。

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