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在最小化的SFTI-1支架中,超越了鲍曼-伯克蛋白酶抑制剂P3'位置脯氨酸的绝对结构要求。

The absolute structural requirement for a proline in the P3'-position of Bowman-Birk protease inhibitors is surmounted in the minimized SFTI-1 scaffold.

作者信息

Daly Norelle L, Chen Yi-Kuang, Foley Fiona M, Bansal Paramjit S, Bharathi Rekha, Clark Richard J, Sommerhoff Christian P, Craik David J

机构信息

Institute for Molecular Bioscience and Australian Research Council Special Research Centre for Functional and Applied Genomics, the University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

J Biol Chem. 2006 Aug 18;281(33):23668-75. doi: 10.1074/jbc.M601426200. Epub 2006 Jun 9.

Abstract

SFTI-1 is a small cyclic peptide from sunflower seeds that is one of the most potent trypsin inhibitors of any naturally occurring peptide and is related to the Bowman-Birk family of inhibitors (BBIs). BBIs are involved in the defense mechanisms of plants and also have potential as cancer chemopreventive agents. At only 14 amino acids in size, SFTI-1 is thought to be a highly optimized scaffold of the BBI active site region, and thus it is of interest to examine its important structural and functional features. In this study, a suite of 12 alanine mutants of SFTI-1 has been synthesized, and their structures and activities have been determined. SFTI-1 incorporates a binding loop that is clasped together with a disulfide bond and a secondary peptide loop making up the circular backbone. We show here that the secondary loop stabilizes the binding loop to the consequences of sequence variations. In particular, full-length BBIs have a conserved cis-proline that has been shown previously to be required for well defined structure and potent activity, but we show here that the SFTI-1 scaffold can accommodate mutation of this residue and still have a well defined native-like conformation and nanomolar activity in inhibiting trypsin. Among the Ala mutants, the most significant structural perturbation occurred when Asp14 was mutated, and it appears that this residue is important in stabilizing the trans peptide bond preceding Pro13 and is thus a key residue in maintaining the highly constrained structure of SFTI-1. This aspartic acid residue is thought to be involved in the cyclization mechanism associated with excision of SFTI-1 from its 58-amino acid precursor. Overall, this mutational analysis of SFTI-1 clearly defines the optimized nature of the SFTI-1 scaffold and demonstrates the importance of the secondary loop in maintaining the active conformation of the binding loop.

摘要

SFTI-1是一种来自向日葵种子的小环肽,是所有天然存在的肽中最有效的胰蛋白酶抑制剂之一,与Bowman-Birk抑制剂家族(BBIs)相关。BBIs参与植物的防御机制,也具有作为癌症化学预防剂的潜力。SFTI-1仅含14个氨基酸,被认为是BBI活性位点区域的高度优化支架,因此研究其重要的结构和功能特征很有意义。在本研究中,合成了一组12个SFTI-1的丙氨酸突变体,并测定了它们的结构和活性。SFTI-1包含一个通过二硫键与构成环状主链的二级肽环扣合在一起的结合环。我们在此表明,二级环使结合环对序列变异的影响具有稳定性。特别是,全长BBIs有一个保守的顺式脯氨酸,先前已证明其对于明确的结构和有效活性是必需的,但我们在此表明,SFTI-1支架可以容纳该残基的突变,并且在抑制胰蛋白酶时仍具有明确的天然样构象和纳摩尔活性。在丙氨酸突变体中,当Asp14发生突变时出现了最显著的结构扰动,并且似乎该残基对于稳定Pro13之前的反式肽键很重要,因此是维持SFTI-1高度受限结构的关键残基。这个天冬氨酸残基被认为参与了与从其58个氨基酸前体中切除SFTI-1相关的环化机制。总体而言,对SFTI-1的这种突变分析清楚地定义了SFTI-1支架的优化性质,并证明了二级环在维持结合环活性构象中的重要性。

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