Inomata M, Hayashi M, Nakamura M, Imahori K, Kawashima S
J Biochem. 1985 Aug;98(2):407-16. doi: 10.1093/oxfordjournals.jbchem.a135295.
Some endogenous substrates were incubated with two forms of calcium-activated neutral protease (CANP) with high (muCANP) and low (mCANP) sensitivities to calcium ions. In addition to analyses of the processes of their degradation, changes in the molecular properties of these CANPs were also examined. Among the tested substrate proteins, the myosin heavy chain of rabbit skeletal muscle myofibrils and spectrin or band 3 protein of human erythrocyte membranes were degraded relatively rapidly. So far as these proteins were concerned, a higher degradation velocity was observed for muCANP than for mCANP. Vimentin from ascites tumor cells was degraded most rapidly and no difference was observed in degradation velocity between muCANP and mCANP. In all cases, muCANP and mCANP produced different proteolytic peptide fragments, suggesting the different substrate-specificities of these CANPs. The degradation of substrates always accompanied the autodigestion of CANPs, and the small subunits of both CANPs were degraded in the early stage of the autodigestion. The large subunit of muCANP (79K) was converted to a 76K polypeptide via a 77K polypeptide as an intermediate. The autodigested muCANP with 76K polypeptide retained sufficient protease activity and, moreover, its calcium-sensitivity was higher than that of intact muCANP. The possibility is thus proposed that restricted autodigestion is a necessary activation step for the appearance of activity of muCANP. No such transition was observed for mCANP.
将一些内源性底物与两种对钙离子敏感性不同的钙激活中性蛋白酶(CANP)一起孵育,即高敏感性的μCANP和低敏感性的mCANP。除了分析它们的降解过程外,还检测了这些CANP分子特性的变化。在测试的底物蛋白中,兔骨骼肌肌原纤维的肌球蛋白重链以及人红细胞膜的血影蛋白或带3蛋白降解相对较快。就这些蛋白而言,观察到μCANP的降解速度高于mCANP。腹水肿瘤细胞的波形蛋白降解最快,μCANP和mCANP之间的降解速度没有差异。在所有情况下,μCANP和mCANP产生不同的蛋白水解肽片段,表明这些CANP具有不同的底物特异性。底物的降解总是伴随着CANP的自消化,并且两种CANP的小亚基在自消化的早期阶段就被降解。μCANP的大亚基(79K)通过77K多肽作为中间体转化为76K多肽。具有76K多肽的自消化μCANP保留了足够的蛋白酶活性,而且其钙敏感性高于完整的μCANP。因此提出一种可能性,即有限的自消化是μCANP活性出现的必要激活步骤。未观察到mCANP有这种转变。