Imajoh S, Kawasaki H, Suzuki K
J Biochem. 1987 Feb;101(2):447-52. doi: 10.1093/oxfordjournals.jbchem.a121930.
High-Ca2+-requiring calcium-activated neutral protease (mCANP), a dimeric enzyme composed of large (Mr = 80,000) and small (Mr = 28,000) subunits, is resistant to carboxypeptidase Y (CPase Y) in the absence of NaSCN. In the presence of 0.2 M NaSCN, CPase Y digested mCANP, one or two amino acids being released from the COOH-termini of the large and small subunits, but no change occurred in the activity of the digested mCANP. In the presence of 1 M NaSCN, 8-10 amino acids were released from the subunits by CPase Y, and the COOH-terminal potential Ca2+-binding sites of both subunits were destroyed. On digestion under these conditions, mCANP lost the ability to form a complex, and the proteolytic activity was not recovered even when the digested subunits were mixed with native subunits. These results suggest that the COOH-terminal regions of the two subunits of mCANP, which constitute the helical portions of the COOH-terminal E-F hand structures in both subunits, are essential for the subunit association and resulting proteolytic activity.
高钙需求钙激活中性蛋白酶(mCANP)是一种由大亚基(Mr = 80,000)和小亚基(Mr = 28,000)组成的二聚体酶,在没有硫氰酸钠(NaSCN)的情况下对羧肽酶Y(CPase Y)具有抗性。在0.2 M NaSCN存在的情况下,CPase Y消化mCANP,大亚基和小亚基的羧基末端会释放出一到两个氨基酸,但消化后的mCANP活性没有变化。在1 M NaSCN存在的情况下,CPase Y从亚基中释放出8 - 10个氨基酸,两个亚基的羧基末端潜在钙结合位点均被破坏。在这些条件下进行消化时,mCANP失去了形成复合物的能力,即使将消化后的亚基与天然亚基混合,蛋白水解活性也无法恢复。这些结果表明,mCANP两个亚基的羧基末端区域,构成了两个亚基羧基末端E-F手结构的螺旋部分,对于亚基缔合以及由此产生的蛋白水解活性至关重要。