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钙激活中性蛋白酶(CANP)的有限自溶作用:对钙离子需求的降低是由于大亚基的氨基末端加工所致。

Limited autolysis of calcium-activated neutral protease (CANP): reduction of the Ca2+-requirement is due to the NH2-terminal processing of the large subunit.

作者信息

Imajoh S, Kawasaki H, Suzuki K

出版信息

J Biochem. 1986 Sep;100(3):633-42. doi: 10.1093/oxfordjournals.jbchem.a121755.

Abstract

Calcium-activated neutral protease (rabbit mCANP), composed of large and small subunits, was converted to a lower-Ca2+-requiring form (derived microCANP) by limited autolysis in the presence of Ca2+. The NH2-terminal regions of the two subunits of mCANP were cleaved by autolysis, but the COOH-termini remained intact after autolysis. When native mCANP or derived microCANP was dissociated into subunits, the proteolytic activity of the large subunit was reduced to 2-5% of that of the native dimeric enzyme. The Ca2+-sensitivity of one hybrid CANP reconstituted from the large subunit of derived microCANP and the small subunit of native mCANP was similar to that of derived microCANP. However, the other hybrid molecule composed of the large subunit of native mCANP and the small subunit of derived microCANP required a high concentration of Ca2+ for activity, like native mCANP. These results indicate that the Ca2+-sensitivity of derived microCANP is determined by the structural change of the large subunit resulting from loss of its NH2-terminal region. The autolysis of the small subunit apparently has no effect on the reduction of the Ca2+-requirement.

摘要

钙激活中性蛋白酶(兔mCANP)由大亚基和小亚基组成,在Ca2+存在下通过有限的自溶作用转变为一种需要较低Ca2+浓度的形式(衍生的微CANP)。mCANP两个亚基的NH2末端区域通过自溶被切割,但自溶后COOH末端保持完整。当天然mCANP或衍生的微CANP解离成亚基时,大亚基的蛋白水解活性降低至天然二聚体酶活性的2 - 5%。由衍生的微CANP的大亚基和天然mCANP的小亚基重构的一种杂合CANP的Ca2+敏感性与衍生的微CANP相似。然而,由天然mCANP的大亚基和衍生的微CANP的小亚基组成的另一种杂合分子像天然mCANP一样,需要高浓度的Ca2+才能具有活性。这些结果表明,衍生的微CANP的Ca2+敏感性是由其NH2末端区域缺失导致的大亚基结构变化所决定的。小亚基的自溶显然对Ca2+需求的降低没有影响。

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