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神经系统对全身蛋白质稳态的控制。

Control of systemic proteostasis by the nervous system.

机构信息

Biomedical Neuroscience Institute, Faculty of Medicine, University of Chile, Santiago, Chile; Program of Cellular and Molecular Biology, Center for Molecular Studies of the Cell, Institute of Biomedical Sciences, University of Chile, Santiago, Chile.

Biomedical Neuroscience Institute, Faculty of Medicine, University of Chile, Santiago, Chile; Program of Cellular and Molecular Biology, Center for Molecular Studies of the Cell, Institute of Biomedical Sciences, University of Chile, Santiago, Chile; Neurounion Biomedical Foundation, CENPAR, Santiago, Chile; Department of Immunology and Infectious diseases, Harvard School of Public Health, Boston, MA, USA.

出版信息

Trends Cell Biol. 2015 Jan;25(1):1-10. doi: 10.1016/j.tcb.2014.08.001. Epub 2014 Aug 28.

Abstract

Maintenance of organismal homeostasis depends on the integration of intracellular and external signals, involving the ability to detect molecular perturbations. An explosion of studies in model organisms indicates the occurrence of dynamic communication between alarm pathways engaged by protein-folding stress in neurons that activate adaptive programs in peripheral organs to control cellular proteostasis. Here we review emerging concepts that highlight the contribution of the proteostasis network to the regulation of several aspects of animal physiology through central integration of signals spanning multiple tissues and organs. These recent findings uncover a new layer of functional interrelation between cells that handle and orchestrate the global maintenance of the proteome at the organismal level in a cell-nonautonomous manner.

摘要

维持机体的内稳态依赖于细胞内和外部信号的整合,这涉及到检测分子扰动的能力。模式生物的大量研究表明,神经元中由蛋白质折叠应激引发的警报途径之间存在动态通讯,这些警报途径激活外周器官中的适应性程序来控制细胞的蛋白质稳态。在这里,我们回顾了一些新出现的概念,这些概念强调了蛋白质稳态网络通过对跨越多个组织和器官的信号进行中枢整合,对动物生理学的几个方面的调节所做出的贡献。这些新发现揭示了细胞之间新的功能相互关系,这些细胞以非自主的方式在细胞水平上处理和协调蛋白质组的全局维持。

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