分子伴侣网络的系统生物学。

Péter Csermely, Tamás Korcsmáros, István A Kovács, Máté S Szalay, Csaba Soti
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引用次数: 17

摘要

分子伴侣不仅是帮助其他蛋白质折叠、再折叠、激活或组装的令人着迷的分子机器,而且还具有许多功能。这些功能只能通过考虑细胞网络的涌现特性——以及作为特殊网络成分的伴侣的涌现特性来理解。作为伴侣蛋白网络相关作用的一个显著例子,它们可能作为稳定各种细胞和生物体表型的遗传缓冲,并可能作为可进化性的潜在调节因子。为什么伴侣在蜂窝网络中如此特殊?伴侣:(1)与大多数伴侣存在弱联系,即低亲和力,短暂互动;(2)连接枢纽,即充当细胞的“策划者”,靠近几个有很多邻居的中心蛋白;和(3)位于网络模块的重叠部分,这使它们具有特殊的调节作用。重要的是,在应激过程中,伴侣蛋白可以解耦甚至隔离蛋白-蛋白相互作用网络、信号网络、遗传调控网络和膜细胞器网络的模块,这在网络水平上为细胞提供了额外的伴侣蛋白介导的保护。此外,通过对不同细胞模块中潜在相互作用伙伴的低亲和力、“准随机”抽样,伴侣在压力后重建模块间接触是必不可少的。这为细胞网络的伴侣调节模块化进化开辟了道路,并帮助我们设计新的治疗和抗衰老策略。
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Systems biology of molecular chaperone networks.

Molecular chaperones are not only fascinating molecular machines that help the folding, refolding, activation or assembly of other proteins, but also have a number of functions. These functions can be understood only by considering the emergent properties of cellular networks--and that of chaperones as special network constituents. As a notable example for the network-related roles of chaperones they may act as genetic buffers stabilizing the phenotype of various cells and organisms, and may serve as potential regulators of evolvability. Why are chaperones special in the context of cellular networks? Chaperones: (1) have weak links, i.e. low affinity, transient interactions with most of their partners; (2) connect hubs, i.e. act as 'masterminds' of the cell being close to several centre proteins with a lot of neighbours; and (3) are in the overlaps of network modules, which confers upon them a special regulatory role. Importantly, chaperones may uncouple or even quarantine modules of protein-protein interaction networks, signalling networks, genetic regulatory networks and membrane organelle networks during stress, which gives an additional chaperone-mediated protection for the cell at the network-level. Moreover, chaperones are essential to rebuild inter-modular contacts after stress by their low affinity, 'quasi-random' sampling of the potential interaction partners in different cellular modules. This opens the way to the chaperone-regulated modular evolution of cellular networks, and helps us to design novel therapeutic and anti-ageing strategies.

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