Kooistra T, Millard P C, Lloyd J B
Biochem J. 1982 May 15;204(2):471-7. doi: 10.1042/bj2040471.
The effects of thiols on the breakdown of 125I-labelled insulin, albumin and formaldehyde-treated albumin by highly purified rat liver cathepsins B, D, H and L at pH 4.0 and 5.5 were studied. At both pH values degradation was strongly activated by the thiols cysteamine, cysteine, dithiothreitol, glutathione and 2-mercaptoethanol, and its rate increased with increasing thiol concentration. Preincubation of the protein substrates with 5 mM-glutathione did not affect concentration. Preincubation of the protein substrates with 5 mM-glutathione did not affect the rate of degradation by cathepsin D or L, and determination of free thiol groups after incubation of the proteins in the presence of glutathione but without cathepsin showed that their disulphide bonds were stable under the incubation conditions. Sephadex G-75 chromatography of the acid-soluble products of insulin digestion by cathepsin D or L suggested that thiols can reduce disulphide bonds in proteins after limited proteolysis. The resultant opening-up of the protein structure would lead to further proteolysis, so that the two processes (proteolysis and reduction) may act synergistically. By using the osmotic protection method it was shown that, at a physiological pH, cysteamine, and its oxidized form cystamine, can cross the lysosome membrane and thus may well be the physiological hydrogen donor for the reduction of disulphides in lysosomes. The results are discussed in relation to the lysosomal storage disease cystinosis.
研究了巯基对高纯度大鼠肝脏组织蛋白酶B、D、H和L在pH 4.0和5.5条件下分解¹²⁵I标记的胰岛素、白蛋白和甲醛处理的白蛋白的影响。在这两个pH值下,半胱胺、半胱氨酸、二硫苏糖醇、谷胱甘肽和2-巯基乙醇等巯基强烈激活降解,且降解速率随巯基浓度增加而提高。蛋白质底物与5 mM谷胱甘肽预孵育不影响浓度。蛋白质底物与5 mM谷胱甘肽预孵育不影响组织蛋白酶D或L的降解速率,并且在有谷胱甘肽但无组织蛋白酶存在的情况下孵育蛋白质后测定游离巯基基团表明,它们的二硫键在孵育条件下是稳定的。用组织蛋白酶D或L消化胰岛素的酸溶性产物进行葡聚糖G - 75层析表明,巯基在有限的蛋白水解后可还原蛋白质中的二硫键。蛋白质结构的这种开放会导致进一步的蛋白水解,因此这两个过程(蛋白水解和还原)可能协同作用。通过渗透压保护法表明,在生理pH值下,半胱胺及其氧化形式胱胺可以穿过溶酶体膜,因此很可能是溶酶体中二硫键还原的生理氢供体。结合溶酶体贮积病胱氨酸病对结果进行了讨论。