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秀丽隐杆线虫的神经退行性变需要特定的天冬氨酰蛋白酶和钙蛋白酶。

Specific aspartyl and calpain proteases are required for neurodegeneration in C. elegans.

作者信息

Syntichaki Popi, Xu Keli, Driscoll Monica, Tavernarakis Nektarios

机构信息

Institute of Molecular Biology and Biotechnology, Foundation for Research and Technology, Heraklion 71110, Crete, Greece.

出版信息

Nature. 2002 Oct 31;419(6910):939-44. doi: 10.1038/nature01108.

Abstract

Necrotic cell death underlies the pathology of numerous human neurodegenerative conditions. In the nematode Caenorhabditis elegans, gain-of-function mutations in specific ion channel genes such as the degenerin genes deg-1 and mec-4, the acetylcholine receptor channel subunit gene deg-3 and the G(s) protein alpha-subunit gene gsa-1 evoke an analogous pattern of degenerative (necrotic-like) cell death in neurons that express the mutant proteins. An increase in concentrations of cytoplasmic calcium in dying cells, elicited either by extracellular calcium influx or by release of endoplasmic reticulum stores, is thought to comprise a major death-signalling event. But the biochemical mechanisms by which calcium triggers cellular demise remain largely unknown. Here we report that neuronal degeneration inflicted by various genetic lesions in C. elegans requires the activity of the calcium-regulated CLP-1 and TRA-3 calpain proteases and aspartyl proteases ASP-3 and ASP-4. Our findings show that two distinct classes of proteases are involved in necrotic cell death and suggest that perturbation of intracellular concentrations of calcium may initiate neuronal degeneration by deregulating proteolysis. Similar proteases may mediate necrotic cell death in humans.

摘要

坏死性细胞死亡是众多人类神经退行性疾病病理学的基础。在线虫秀丽隐杆线虫中,特定离子通道基因(如退化素基因deg-1和mec-4、乙酰胆碱受体通道亚基基因deg-3以及G(s)蛋白α亚基基因gsa-1)的功能获得性突变,会在表达突变蛋白的神经元中引发类似的退行性(坏死样)细胞死亡模式。垂死细胞中细胞质钙浓度的增加,无论是由细胞外钙内流还是内质网钙库释放引起的,都被认为是主要的死亡信号事件。但是钙触发细胞死亡的生化机制在很大程度上仍然未知。在这里,我们报告线虫中各种基因损伤导致的神经元退化需要钙调节的CLP-1和TRA-3钙蛋白酶以及天冬氨酸蛋白酶ASP-3和ASP-4的活性。我们的研究结果表明,两类不同的蛋白酶参与坏死性细胞死亡,并表明细胞内钙浓度的扰动可能通过解除蛋白水解的调控来引发神经元退化。类似的蛋白酶可能介导人类的坏死性细胞死亡。

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