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中枢神经系统中的死亡受体Fas(CD95)信号传导:调节神经可塑性?

Death receptor Fas (CD95) signaling in the central nervous system: tuning neuroplasticity?

作者信息

Reich Arno, Spering Christopher, Schulz Jörg B

机构信息

Department of Neurodegeneration and Restorative Research, Center for Molecular Physiology of the Brain, University of Göttingen, D-37073 Göttingen, Germany.

出版信息

Trends Neurosci. 2008 Sep;31(9):478-86. doi: 10.1016/j.tins.2008.06.007. Epub 2008 Aug 3.

Abstract

For over a decade, neuroscientific research has focused on processes of apoptosis and its contribution to the pathophysiology of neurological diseases. In the central nervous system, the degree of intrinsic mitochondrial-mediated apoptotic signaling expresses a cell's individual metabolic stress, whereas activation of the extrinsic death receptor-induced cascade is regarded as a sign of imbalanced cellular networks. Under physiological conditions, most neurons possess death receptors without being sensitive to receptor-mediated apoptosis. This paradox raises two questions: what is the evolutionary advantage of expressing potentially harmful proteins? How is their signaling controlled? This review summarizes the functional relevance of FasL-Fas signaling--a quintessential death ligand/receptor system--in different neurological disease models ranging from traumatic, inflammatory and ischemic to neurodegenerative processes. Furthermore, it outlines alternative non-apoptotic Fas signaling, shedding new light on its neuroplastic capacity. Finally, receptor-proximal regulatory proteins are introduced and identified as potential protagonists of disease-modifying neurological therapies.

摘要

十多年来,神经科学研究一直聚焦于细胞凋亡过程及其对神经疾病病理生理学的影响。在中枢神经系统中,内在的线粒体介导的凋亡信号程度反映了细胞的个体代谢应激,而外在死亡受体诱导的级联反应的激活则被视为细胞网络失衡的标志。在生理条件下,大多数神经元拥有死亡受体,但对受体介导的凋亡不敏感。这一矛盾引发了两个问题:表达潜在有害蛋白质的进化优势是什么?它们的信号是如何被控制的?本综述总结了FasL-Fas信号通路——一种典型的死亡配体/受体系统——在从创伤性、炎症性、缺血性到神经退行性过程等不同神经疾病模型中的功能相关性。此外,还概述了替代性的非凋亡Fas信号通路,为其神经可塑性能力提供了新的见解。最后,介绍了受体近端调节蛋白,并将其确定为神经疾病修饰治疗的潜在主角。

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