Ohno S, Emori Y, Imajoh S, Kawasaki H, Kisaragi M, Suzuki K
Nature. 1984;312(5994):566-70. doi: 10.1038/312566a0.
Calcium-dependent protease (calcium protease) is apparently involved in a variety of cellular processes. Here we have attempted to clarify the role and regulatory mechanism of calcium protease by analysing its structure. The complete primary structure of calcium protease (relative molecular mass (Mr) 80,000 (80K), 705 amino acids) was deduced from the nucleotide sequence of cloned complementary DNA. The protein contains four distinct domains, and we have observed a marked similarity between the second and fourth domains and the papain-like thiol proteases and calmodulin-like calcium-binding proteins, respectively. This finding suggests that calcium protease arose from the fusion of genes for proteins of completely different function and evolutionary origin. Further, it provides functional insight into cellular regulatory mechanisms mediated by Ca2+ through calcium-binding proteins.
钙依赖性蛋白酶(钙蛋白酶)显然参与多种细胞过程。在此,我们试图通过分析其结构来阐明钙蛋白酶的作用和调控机制。从克隆的互补DNA的核苷酸序列推导得出钙蛋白酶的完整一级结构(相对分子质量(Mr)80,000(80K),705个氨基酸)。该蛋白质包含四个不同的结构域,并且我们分别观察到第二和第四结构域与木瓜蛋白酶样巯基蛋白酶和钙调蛋白样钙结合蛋白之间存在显著相似性。这一发现表明钙蛋白酶起源于功能和进化起源完全不同的蛋白质基因的融合。此外,它为Ca2+通过钙结合蛋白介导的细胞调控机制提供了功能方面的见解。