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来自迟缓芽孢杆菌的枯草杆菌蛋白酶309中疏水S4-P4相互作用的意义

Significance of hydrophobic S4-P4 interactions in subtilisin 309 from Bacillus lentus.

作者信息

Bech L M, Sørensen S B, Breddam K

机构信息

Department of Chemistry, Carlsberg Laboratory, Copenhagen Valby, Denmark.

出版信息

Biochemistry. 1993 Mar 23;32(11):2845-52. doi: 10.1021/bi00062a016.

DOI:10.1021/bi00062a016
PMID:8457550
Abstract

The subtilisins have an extended substrate binding cleft comprising at least 8 subsites. Two pockets at the S1 and S4 sites are particularly conspicuous, and the interactions between substrate and these two pockets are very important for the substrate specificity. Phe residues have mutationally been introduced at one of positions 102, 128, 130, and 132 of the subtilisin Savinase from Bacillus lentus to investigate the effects of introducing bulky groups along the rim of the S4 binding pocket. It is shown that the marked P4 preference of wild-type Savinase for aromatic groups is eliminated by the Gly102-->Phe and Ser128-->Phe mutations, indicating that bulky groups at positions 102 and 128 block the S4 binding site. In contrast, the activity toward hydrophilic P4 residues is not nearly as affected by these mutations, suggesting that the binding mode of the P4 side chain is dependent on its properties. Introduction of a bulky -CH2-S-CH2-CH2-pyridyl group at position 128, by mutational incorporation of Cys followed by chemical modification with 2-vinylpyridine, has essentially the same effect. The Ser130-->Phe mutation hardly affects the activity of the enzyme while the Ser-->Phe mutation at position 132 renders the preference for hydrophobic groups in P4 even more pronounced. This mutation furthermore affects the size of the S4 pocket. An analysis of double mutants at positions 132 and 104 suggests that the S4 region is flexible and is adjusted upon binding of substrates.

摘要

枯草杆菌蛋白酶具有一个延伸的底物结合裂隙,包含至少8个亚位点。S1和S4位点的两个口袋特别明显,底物与这两个口袋之间的相互作用对于底物特异性非常重要。已在来自迟缓芽孢杆菌的枯草杆菌蛋白酶嗜热栖热菌的102、128、130和132位之一引入苯丙氨酸残基,以研究沿着S4结合口袋边缘引入大体积基团的影响。结果表明,野生型嗜热栖热菌对芳香族基团明显的P4偏好被Gly102→Phe和Ser128→Phe突变消除,这表明102和128位的大体积基团阻断了S4结合位点。相比之下,这些突变对亲水性P4残基的活性影响不大,这表明P4侧链的结合模式取决于其性质。通过将半胱氨酸突变掺入并随后用2-乙烯基吡啶进行化学修饰,在128位引入一个大体积的-CH2-S-CH2-CH2-吡啶基团,基本上具有相同的效果。Ser130→Phe突变几乎不影响酶的活性,而132位的Ser→Phe突变使对P4中疏水基团的偏好更加明显。该突变还影响S4口袋的大小。对132和104位双突变体的分析表明,S4区域是灵活的,并且在底物结合时会进行调整。

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