Holmes M A, Tronrud D E, Matthews B W
Biochemistry. 1983 Jan 4;22(1):236-40. doi: 10.1021/bi00270a034.
The mode of binding of the irreversible thermolysin inhibitor ClCH2CO-DL-(N-OH)Leu-OCH3 [Rasnick, D., & Powers, J.C. (1978) Biochemistry 17, 4363-4369] has been determined by X-ray crystallography at a resolution of 2.3 A and the structure of the covalent complex refined to give a crystallographic residual of 17.0%. This is the first such structural study of an active-site-directed covalent complex of a zinc protease. As anticipated by Rasnick and Powers, the inhibitor alkylates Glu-143 in the thermolysin active site, and the hydroxamic acid moiety coordinates the zinc ion. The formation of the covalent complex is associated with a significant shift in a segment of the polypeptide backbone in the vicinity of the active site. This conformational adjustment appears to be necessary to relieve steric hindrance which would otherwise prevent alkylation of Glu-143. It is suggested that this steric hindrance, which occurs for thermolysin but would not be expected for carboxypeptidase A, accounts for the previously inexplicable difference in reactivity of these two metalloproteases toward N-haloacetyl amino acids. The relevance of this steric hindrance to the mechanism of catalysis is discussed. In agreement with previous results [Kester, W. R., & Matthews, B. W. (1977) Biochemistry 16, 2506-2516], it appears that steric hindrance prevents the direct attack of Glu-143 on the carbonyl carbon of an extended substrate, therefore ruling out the anhydride pathway in thermolysin-catalyzed hydrolysis of polypeptide substrates and their ester analogues.
不可逆的嗜热菌蛋白酶抑制剂ClCH2CO-DL-(N-OH)Leu-OCH3的结合模式[拉斯尼克,D.,&鲍尔斯,J.C.(1978年)《生物化学》17, 4363 - 4369]已通过X射线晶体学以2.3埃的分辨率确定,并且共价复合物的结构经过精修,得到的晶体学残余误差为17.0%。这是对锌蛋白酶活性位点导向共价复合物的首次此类结构研究。正如拉斯尼克和鲍尔斯所预期的,抑制剂使嗜热菌蛋白酶活性位点中的Glu - 143烷基化,并且异羟肟酸部分与锌离子配位。共价复合物的形成与活性位点附近多肽主链的一段发生显著位移有关。这种构象调整似乎是为了消除空间位阻,否则会阻止Glu - 143的烷基化。有人提出,这种空间位阻在嗜热菌蛋白酶中存在,但对于羧肽酶A则不会出现,这解释了这两种金属蛋白酶对N - 卤代乙酰氨基酸反应性先前无法解释的差异。讨论了这种空间位阻与催化机制的相关性。与先前的结果[凯斯特,W.R.,&马修斯,B.W.(1977年)《生物化学》16, 2506 - 2516]一致,似乎空间位阻阻止了Glu - 143对伸展底物羰基碳的直接攻击,因此排除了嗜热菌蛋白酶催化多肽底物及其酯类似物水解的酸酐途径。