McGuire M J, Reckelhoff J F, Croall D E, DeMartino G N
Department of Physiology, University of Texas Southwestern Medical Center, Dallas 75235.
Biochim Biophys Acta. 1988 Nov 17;967(2):195-203. doi: 10.1016/0304-4165(88)90009-8.
Soluble, cell-free extracts of BHK 21/C13 fibroblasts degraded a variety of exogenous proteins to acid-soluble peptides at pH 8.0. ATP stimulated the rates of proteolysis. Both the absolute rate of proteolysis and the magnitude of the ATP effect depended on the specific substrate. For example, casein was degraded approximately 10-fold faster than lysozyme, but lysozyme degradation was more highly stimulated by ATP than was casein degradation. Ubiquitin enhanced the ATP-stimulated proteolysis of each substrate in both postmicrosomal extracts and DEAE-cellulose fractionated extracts. In each extract, ubiquitin enhanced the ATP-stimulated degradation of lysozyme to a greater degree than that of casein. These results suggested that lysozyme was degraded by a pathway that was more dependent upon ubiquitin than was casein. Further evidence for this conclusion was obtained in studies using substrates whose amino groups were blocked by extensive methylation or carbamoylation. The high molecular weight proteinase, macropain, appears to be involved in the ATP-stimulated degradation of both substrates. Specific immunoprecipitation of macropain with polyclonal antibodies resulted in the inhibition of ATP-stimulated proteinase activity both in the absence and presence of ubiquitin. These results indicate that macropain plays a role in both ubiquitin-mediated and ubiquitin-independent ATP-stimulated proteolysis in BHK cell extracts.
BHK 21/C13成纤维细胞的可溶性无细胞提取物在pH 8.0时可将多种外源蛋白质降解为酸溶性肽。ATP刺激了蛋白水解速率。蛋白水解的绝对速率和ATP效应的大小均取决于特定底物。例如,酪蛋白的降解速度比溶菌酶快约10倍,但ATP对溶菌酶降解的刺激作用比对酪蛋白降解的刺激作用更强。泛素增强了微粒体后提取物和DEAE - 纤维素分级提取物中每种底物的ATP刺激的蛋白水解作用。在每种提取物中,泛素对溶菌酶的ATP刺激降解的增强程度大于对酪蛋白的增强程度。这些结果表明,溶菌酶通过比酪蛋白更依赖泛素的途径进行降解。在使用氨基被广泛甲基化或氨甲酰化封闭的底物的研究中获得了支持该结论的进一步证据。高分子量蛋白酶,即巨蛋白酶,似乎参与了两种底物的ATP刺激的降解过程。用多克隆抗体对巨蛋白酶进行特异性免疫沉淀导致在有无泛素的情况下均抑制ATP刺激的蛋白酶活性。这些结果表明,巨蛋白酶在BHK细胞提取物中泛素介导和泛素非依赖性ATP刺激的蛋白水解过程中均发挥作用。