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改变嗜热菌蛋白酶样蛋白酶的疏水S1'亚位点对底物特异性的影响。

The effect of changing the hydrophobic S1' subsite of thermolysin-like proteases on substrate specificity.

作者信息

de Kreij A, van den Burg B, Veltman O R, Vriend G, Venema G, Eijsink V G

机构信息

Department of Genetics, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Kerklaan, NN Haren, The Netherlands.

出版信息

Eur J Biochem. 2001 Sep;268(18):4985-91. doi: 10.1046/j.0014-2956.2001.02434.x.

Abstract

The hydrophobic S1' subsite is one of the major determinants of the substrate specificity of thermolysin and related M4 family proteases. In the thermolysin-like protease (TLP) produced by Bacillus stearothermophilus (TLP-ste), the hydrophobic S1' subsite is mainly formed by Phe130, Phe133, Val139 and Leu202. In the present study, we have examined the effects of replacing Leu202 by smaller (Gly, Ala, Val) and larger (Phe, Tyr) hydrophobic residues. The mutational effects showed that the wild-type S1' pocket is optimal for binding leucine side chains. Reduction of the size of residue 202 resulted in a higher efficiency towards substrates with Phe in the P1' position. Rather unexpectedly, the Leu202-->Phe and Leu202-->Tyr mutations, which were expected to decrease the size of the S1' subsite, resulted in a large increase in activity towards dipeptide substrates with Phe in the P1' position. This is probably due to the fact that 202Phe and 202Tyr adopt a second possible rotamer that opens up the subsite compared to Leu202, and also favours interactions with the substrate. To validate these results, we constructed variants of thermolysin with changes in the S1' subsite. Thermolysin and TLP-ste variants with identical S1' subsites were highly similar in terms of their preference for Phe vs. Leu in the P1' position.

摘要

疏水性S1'亚位点是嗜热菌蛋白酶及相关M4家族蛋白酶底物特异性的主要决定因素之一。在嗜热脂肪芽孢杆菌产生的嗜热菌蛋白酶样蛋白酶(TLP-ste)中,疏水性S1'亚位点主要由Phe130、Phe133、Val139和Leu202构成。在本研究中,我们考察了用较小的(甘氨酸、丙氨酸、缬氨酸)和较大的(苯丙氨酸、酪氨酸)疏水性残基取代Leu202的影响。突变效应表明,野生型S1'口袋对于结合亮氨酸侧链是最优的。202位残基尺寸的减小导致对P1'位置为苯丙氨酸的底物具有更高的催化效率。相当出乎意料的是,预期会减小S1'亚位点尺寸的Leu202→Phe和Leu202→Tyr突变,却导致对P1'位置为苯丙氨酸的二肽底物的活性大幅增加。这可能是由于202位苯丙氨酸和202位酪氨酸采用了第二种可能的旋转异构体,与Leu202相比,这种异构体使亚位点开放,并且也有利于与底物的相互作用。为了验证这些结果,我们构建了S1'亚位点有变化的嗜热菌蛋白酶变体。具有相同S1'亚位点的嗜热菌蛋白酶和TLP-ste变体在对P1'位置苯丙氨酸与亮氨酸的偏好方面高度相似。

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