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结构比较表明,嗜热菌蛋白酶及相关中性蛋白酶在催化过程中会发生铰链弯曲运动。

Structural comparison suggests that thermolysin and related neutral proteases undergo hinge-bending motion during catalysis.

作者信息

Holland D R, Tronrud D E, Pley H W, Flaherty K M, Stark W, Jansonius J N, McKay D B, Matthews B W

机构信息

Institute of Molecular Biology, University of Oregon, Eugene 97403.

出版信息

Biochemistry. 1992 Nov 24;31(46):11310-6. doi: 10.1021/bi00161a008.

Abstract

Crystal structures are known for three members of the bacterial neutral protease family: thermolysin from Bacillus thermoproteolyticus (TLN), the neutral protease from Bacillus cereus (NEU), and the elastase of Pseudomonas aeruginosa (PAE), both in free and ligand-bound forms. Each enzyme consists of an N-terminal and C-terminal domain with the active site formed at the junction of the two domains. Comparison of the different molecules reveals that the structure within each domain is well conserved, but there are substantial hinge-bending displacements (up to 16 degrees) of one domain relative to the other. These domain motions can be correlated with the presence or absence of bound inhibitor, as was previously observed in the specific example of PAE [Thayer, M.M., Flaherty, K.M., & McKay, D.B. (1991) J. Biol. Chem. 266, 2864-2871]. The binding of inhibitor appears to be associated with a reduction of the domain hinge-bending angle by 6-14 degrees and a closure of the "jaws" of the active site cleft by about 2 A. Crystallographic refinement of the structure of thermolysin suggests that electron density seen in the active site of the enzyme in the original structure determination probably corresponds to a bound dipeptide. Thus, the crystal structure appears to correspond to an enzyme-inhibitor or enzyme-product complex, rather than the free enzyme, as has previously been assumed.

摘要

已知细菌中性蛋白酶家族的三个成员的晶体结构

嗜热栖热芽孢杆菌的嗜热菌蛋白酶(TLN)、蜡状芽孢杆菌的中性蛋白酶(NEU)以及铜绿假单胞菌的弹性蛋白酶(PAE),均有游离形式和配体结合形式。每种酶都由一个N端结构域和一个C端结构域组成,活性位点在两个结构域的交界处形成。对不同分子的比较表明,每个结构域内的结构高度保守,但一个结构域相对于另一个结构域存在显著的铰链弯曲位移(高达16度)。这些结构域运动与结合抑制剂的有无相关,正如之前在PAE的具体例子中所观察到的那样[塞耶,M.M.,弗莱厄蒂,K.M.,&麦凯,D.B.(1991年)《生物化学杂志》266,2864 - 2871]。抑制剂的结合似乎与结构域铰链弯曲角度减小6 - 14度以及活性位点裂隙的“钳口”闭合约2埃有关。嗜热菌蛋白酶结构的晶体学精修表明,在最初结构测定中酶活性位点看到的电子密度可能对应于一个结合的二肽。因此,晶体结构似乎对应于一种酶 - 抑制剂或酶 - 产物复合物,而非如之前所假设的游离酶。

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