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枯草杆菌蛋白酶对牛羧肽酶A的有限切割所诱导的催化和构象变化。

Catalytic and conformational changes induced by limited subtilisin cleavage of bovine carboxypeptidase A.

作者信息

Solomon B M, Larsen K S, Riordan J F

机构信息

Center for Biochemical and Biophysical Sciences and Medicine, Harvard Medical School, Boston, Massachusetts.

出版信息

Biochemistry. 1990 Aug 7;29(31):7303-9. doi: 10.1021/bi00483a021.

Abstract

Limited proteolysis of carboxypeptidase A from bovine pancreas with subtilisin Carlsberg generates a stable intermediate, carboxypeptidase S, whose esterase and peptidase activities are increased and decreased, respectively, under standard assay conditions. Carboxypeptidase S was isolated by affinity chromatography. Sequence analysis shows that it is cleaved solely at the Ala154-Gly155 bond. Its enzymatic properties were determined under stopped-flow conditions with Dns-Gly-Ala-Phe and its ester analogue Dns-Gly-Ala-OPhe. For both substrates, the Km values are increased 30-40-fold. The kcat value for peptide hydrolysis is virtually unaffected whereas that for ester hydrolysis is increased 10-fold. The magnitude of the Km effect is equivalent to a loss of 9 kJ/mol of binding energy and likely reflects a disruption of the network of hydrogen bonds that links Tyr-248 and Arg-145 to the backbone carbonyls of Ala-154 and Gly-155. The difference in kcat effects for the two substrate classes is related to differences in the chemical nature of the rate-determining step. Product release is rate determining for catalytic hydrolysis of ester substrates, and hence, the increase in kcat indicates that dissociation of products is facilitated as a result of the Ala154-Gly155 bond scission. The changes in enzymatic activity accompanying limited proteolysis are due to conformational alterations in the vicinity of the active center of the molecule. The affinity of a monoclonal antibody, mAb 100, directed toward the antigenic determinant located between residues 209 and 218 in carboxypeptidase A is diminished considerably for carboxypeptidase S.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

用嗜热栖热菌蛋白酶对牛胰羧肽酶A进行有限度的蛋白水解会产生一种稳定的中间体——羧肽酶S,在标准测定条件下,其酯酶活性增加,肽酶活性降低。通过亲和色谱法分离出羧肽酶S。序列分析表明,它仅在Ala154 - Gly155键处被切割。在停流条件下,用Dns - Gly - Ala - Phe及其酯类似物Dns - Gly - Ala - OPhe测定了其酶学性质。对于这两种底物,Km值增加了30 - 40倍。肽水解的kcat值实际上未受影响,而酯水解的kcat值增加了10倍。Km效应的大小相当于损失了9 kJ/mol的结合能,这可能反映了连接Tyr - 248和Arg - 145与Ala - 154和Gly - 155主链羰基的氢键网络被破坏。两类底物kcat效应的差异与限速步骤化学性质的差异有关。产物释放是酯底物催化水解的限速步骤,因此,kcat的增加表明由于Ala154 - Gly155键的断裂,产物的解离变得更容易。有限度蛋白水解伴随的酶活性变化是由于分子活性中心附近的构象改变。一种针对羧肽酶A中位于残基209和218之间抗原决定簇的单克隆抗体mAb 100,对羧肽酶S的亲和力大大降低。(摘要截短于250字)

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