Ono Yasuko, Hayashi Chikako, Doi Naoko, Kitamura Fujiko, Shindo Mayumi, Kudo Kenichi, Tsubata Takuichi, Yanagida Mitsuaki, Sorimachi Hiroyuki
Department of Enzymatic Regulation for Cell Functions (Calpain Project), The Tokyo Metropolitan Institute of Medical Science, Rinshoken, Tokyo, Japan.
Biotechnol J. 2007 May;2(5):565-76. doi: 10.1002/biot.200700018.
Calpain represents a family of Ca(2+)-dependent cytosolic cysteine proteases found in almost all eukaryotes and some bacteria, and is involved in a variety of biological phenomena, including brain function. Several substrates of calpain are aggressively proteolyzed under pathological conditions, e.g., in neurodegenerating processes, fodrin is proteolyzed by calpain. Because very small amounts of substrate are proteolyzed by calpain under normal biological conditions, the molecular identities of calpain substrates are largely unknown. In this study, an extensive survey of the substrates of p94/calpain 3 in COS7 cells was executed using iTRAQ(TM) labeling and 2-D LC-MALDI analysis. p94 was used because: (i) several p94 splicing variants are expressed in brain tissue even though p94 itself is a skeletal-muscle-specific calpain, and (ii) it exhibits Ca(2+)-independent activity in COS cells, which makes it useful for evaluating the effects of p94 protease activity on proteins without perturbing the cells. Our approach revealed several novel protein substrates for p94, including the substrates of conventional calpains, components of the protein synthesis system, and enzymes of the glycolytic pathway. The results demonstrate the usefulness and sensitivity of this approach for mining calpain substrates. A combination of this method with other analytical methods would contribute to elucidation of the biological relevance of the calpain family.
钙蛋白酶是一类依赖钙离子的胞质半胱氨酸蛋白酶,几乎存在于所有真核生物和一些细菌中,参与包括脑功能在内的多种生物学现象。钙蛋白酶的几种底物在病理条件下会被大量蛋白水解,例如在神经退行性变过程中,血影蛋白会被钙蛋白酶水解。由于在正常生物学条件下,钙蛋白酶仅能水解极少量的底物,因此钙蛋白酶底物的分子身份在很大程度上仍不为人知。在本研究中,我们利用iTRAQ(商标)标记和二维液相色谱–基质辅助激光解吸电离分析,对COS7细胞中p94/钙蛋白酶3的底物进行了广泛的研究。选择p94是因为:(i)尽管p94本身是一种骨骼肌特异性钙蛋白酶,但几种p94剪接变体在脑组织中表达;(ii)它在COS细胞中表现出不依赖钙离子的活性,这使得它有助于在不干扰细胞的情况下评估p94蛋白酶活性对蛋白质的影响。我们的方法揭示了几种新的p94蛋白底物,包括传统钙蛋白酶的底物、蛋白质合成系统的组分以及糖酵解途径的酶。结果证明了该方法在挖掘钙蛋白酶底物方面的有效性和敏感性。将该方法与其他分析方法相结合,将有助于阐明钙蛋白酶家族的生物学相关性。