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胃特异性钙蛋白酶nCL-2定位于黏液细胞中,并对包被蛋白复合体的β亚基β-COP进行蛋白水解。

Stomach-specific calpain, nCL-2, localizes in mucus cells and proteolyzes the beta-subunit of coatomer complex, beta-COP.

作者信息

Hata Shoji, Koyama Suguru, Kawahara Hiroyuki, Doi Naoko, Maeda Tatsuya, Toyama-Sorimachi Noriko, Abe Keiko, Suzuki Koichi, Sorimachi Hiroyuki

机构信息

Department of Enzymatic Regulation for Cell Functions, The Tokyo Metropolitan Institute of Medical Science (Rinshoken), Tokyo 113-8613, Japan.

出版信息

J Biol Chem. 2006 Apr 21;281(16):11214-24. doi: 10.1074/jbc.M509244200. Epub 2006 Feb 13.

Abstract

Calpain is a Ca2+-regulated cytosolic protease. Mammals have 14 calpain genes, half of which are predominantly expressed in specific organ(s); the rest are expressed ubiquitously. A defect in calpains causes lethality/pathogenicity, indicating their physiological indispensability. nCL-2/calpain-8a was identified as a stomach-specific calpain, whose physiological functions are unclear. To elucidate these, we characterized nCL-2 in detail. Unexpectedly, nCL-2 was localized strictly to the surface mucus cells in the gastric epithelium and the mucus-secreting goblet cells in the duodenum. Yeast two-hybrid screening identified several nCL-2-interacting molecules. Of these, the beta-subunit of coatomer complex (beta-COP) occurs in the stomach pit cells and is proteolyzed by nCL-2 in vitro. Furthermore, beta-COP and nCL-2 co-expressed in COS7 cells co-localized in the Golgi, and Ca2+-ionophore stimulation caused the proteolysis of beta-COP near the linker region, resulting in the dissociation of beta-COP from the Golgi. These results strongly suggest novel functions for nCL-2 that involve the membrane trafficking of mucus cells via interactions with coat protein.

摘要

钙蛋白酶是一种受Ca2+调节的胞质蛋白酶。哺乳动物有14个钙蛋白酶基因,其中一半主要在特定器官中表达;其余的则普遍表达。钙蛋白酶的缺陷会导致致死性/致病性,表明它们在生理上必不可少。nCL-2/钙蛋白酶-8a被鉴定为一种胃特异性钙蛋白酶,其生理功能尚不清楚。为了阐明这些功能,我们对nCL-2进行了详细的表征。出乎意料的是,nCL-2严格定位于胃上皮的表面黏液细胞和十二指肠中分泌黏液的杯状细胞。酵母双杂交筛选鉴定出了几种与nCL-2相互作用的分子。其中,外被体复合物的β亚基(β-COP)存在于胃小凹细胞中,并在体外被nCL-2蛋白水解。此外,在COS7细胞中共表达的β-COP和nCL-2在高尔基体中共定位,Ca2+离子载体刺激导致β-COP在连接区域附近发生蛋白水解,从而导致β-COP从高尔基体解离。这些结果强烈表明nCL-2具有新的功能,即通过与外被蛋白相互作用参与黏液细胞的膜转运。

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