Ward C W
Biochim Biophys Acta. 1975 Mar 28;384(1):215-27. doi: 10.1016/0005-2744(75)90110-2.
The metal chelator-sensitive proteinase activity from the larvae of the webbing clothes moth, Tineola bisselliella, was fractionated into two components by chromatography on DEAE-cellulose and the properties of the major fraction investigated. The approximate molecular weight obtained by gel filtration was 24 000. The pH optimum of 9.4 and the high stability between pH 9.0 and 11.5 are consistent with the alkaline conditions known to be present in the larval mid-gut. The enzyme also showed a second region of high stability around pH 2.3. The cleavage specificity against S-carboxy-methyl A and B chains of insulin was quite different to that of the metal chelator-sensitive proteinases from snake venoms and microorganisms. 10 bonds in the A-chain and 8 bonds in the B-chain were cleaved and the tentative rules governing the specificity limitations of this metal-chelator-sensitive proteinase are discussed.
通过在DEAE-纤维素上进行色谱分析,将织网衣蛾(Tineola bisselliella)幼虫的金属螯合剂敏感蛋白酶活性分离为两个组分,并对主要组分的性质进行了研究。通过凝胶过滤获得的近似分子量为24000。最适pH为9.4,在pH 9.0至11.5之间具有高稳定性,这与已知存在于幼虫中肠的碱性条件一致。该酶在pH 2.3左右还表现出第二个高稳定性区域。其对胰岛素S-羧甲基A链和B链的切割特异性与来自蛇毒和微生物的金属螯合剂敏感蛋白酶有很大不同。讨论了A链中的10个键和B链中的8个键被切割以及控制这种金属螯合剂敏感蛋白酶特异性限制的初步规则。