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苏氨酸在鲍曼-伯克蛋白酶抑制剂P2位置的作用:对包含活性位点环的环肽中P2变异的研究。

The role of threonine in the P2 position of Bowman-Birk proteinase inhibitors: studies on P2 variation in cyclic peptides encompassing the reactive site loop.

作者信息

McBride J D, Brauer A B, Nievo M, Leatherbarrow R J

机构信息

Department of Chemistry, Imperial College of Science, London, South Kensington, SW7 2AY, UK.

出版信息

J Mol Biol. 1998 Sep 18;282(2):447-58. doi: 10.1006/jmbi.1998.2032.

Abstract

Previously, we have described a template-assisted combinatorial peptide library based on the anti-tryptic reactive site loop of a Bowman-Birk inhibitor (BBI). Sequences that displayed inhibitory activity re-directed towards chymotrypsin were found to have a consensus binding motif, with their most striking feature being that exclusively threonine was found at the P2 position. The present study investigates the reason for this surprising specificity by maintaining the binding motif but systematically varying the P2 residue. From analysis of 26 variants, it is found that the requirements for inhibitory activity at P2 are finely tuned, and in agreement with the library work, threonine at P2 provides optimal inhibition. In addition, peptides with threonine at P2 are significantly less susceptible to hydrolysis. Examination of all available BBI sequences shows that threonine is very highly conserved at P2, which implies that the functional requirement extends to the full-length BBI protein. Our results are consistent with a dual requirement for hydrophobic recognition within the S2 pocket and maintenance of an inhibitory conformation via hydrogen bonding within the reactive-site loop. As the isolated peptide loop reproduces the active region of full-length BBI, these results explain why threonine is well conserved at P2 in this class of inhibitor. Furthermore, they illustrate that proteinase inhibitor specificity can have characteristics that are not easily predicted from information on the substrate preferences of a proteinase.

摘要

此前,我们描述了一种基于鲍曼-伯克抑制剂(BBI)抗胰蛋白酶反应位点环的模板辅助组合肽库。发现对胰凝乳蛋白酶具有抑制活性的序列具有一个共有结合基序,其最显著的特征是在P2位置仅发现苏氨酸。本研究通过维持结合基序但系统地改变P2残基来探究这种惊人特异性的原因。通过对26个变体的分析发现,P2位置对抑制活性的要求是经过精细调节的,并且与文库研究结果一致,P2位置的苏氨酸提供了最佳抑制效果。此外,P2位置为苏氨酸的肽对水解的敏感性显著降低。对所有可用的BBI序列进行检查表明,苏氨酸在P2位置高度保守,这意味着功能需求延伸至全长BBI蛋白。我们的结果与S2口袋内疏水识别以及通过反应位点环内氢键维持抑制构象的双重需求一致。由于分离的肽环重现了全长BBI的活性区域,这些结果解释了为什么在这类抑制剂中苏氨酸在P2位置高度保守。此外,它们还表明蛋白酶抑制剂的特异性可能具有一些不容易从蛋白酶底物偏好信息中预测的特征。

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