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首页> 外文期刊>Frontiers in Molecular Biosciences >The Protein Quality Control Network in Caulobacter crescentus
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The Protein Quality Control Network in Caulobacter crescentus

机译:Caulobacter Crescentus的蛋白质质量控制网络

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摘要

The asymmetric life cycle of Caulobacter crescentus has provided a model in which to study how protein quality control networks interface with cell cycle and developmental processes, and how the functions of these systems change during exposure to stress. As in most bacteria, the protein quality control network of Caulobacter contains highly conserved ATP-dependent chaperones and proteases as well as more specialized holdases. During growth in optimal conditions, these systems support a regulated circuit of protein synthesis and degradation that drives cell differentiation and cell cycle progression. When stress conditions threaten the proteome, most components of the Caulobacter proteostasis network are upregulated and switch to survival functions that prevent, revert, and remove protein damage, while simultaneously pausing the cell cycle in order to regain protein homeostasis. The specialized physiology of Caulobacter influences how it copes with proteotoxic stress, such as in the global management of damaged proteins during recovery as well as in cell type-specific stress responses. Our mini-review highlights the discoveries that have been made in how Caulobacter utilizes its protein quality control network for regulating its life cycle under optimal and proteotoxic stress conditions, and discusses open research questions in this model.
机译:Caulobacter Crescentus的不对称生命周期提供了一种模型,其中研究蛋白质质量控​​制网络如何与细胞周期和发育过程接口,以及如何在暴露于应力期间改变这些系统的功能。如在大多数细菌中,血清杆菌的蛋白质质量控​​制网络含有高度保守的ATP依赖性伴侣和蛋白酶以及更专业的持久性。在最佳条件下的增长期间,这些系统支持调节蛋白质合成和降解的调节电路,其驱动细胞分化和细胞周期进展。当应力条件威胁蛋白质组时,龟刺蛋白质网络的大多数组分都被上调并切换到预防,恢复和去除蛋白质损伤的存活功能,同时暂停细胞周期以重新获得蛋白质稳定性。细胞的专业生理学影响其如何与蛋白毒性应力进行调节,例如在恢复期间的受损蛋白质的全球管理以及细胞类型特异性应激反应中。我们的迷你审查强调了Cailobacter如何利用其蛋白质质量控​​制网络在最佳和蛋白质毒性条件下调节其生命周期的发现,并讨论了该模型的开放研究问题。

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