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工程化血浆激肽释放酶抑制剂的分析及其对接触激活的影响。

Analysis of an engineered plasma kallikrein inhibitor and its effect on contact activation.

机构信息

Department of Pharmaceutical Chemistry, University of California San Francisco, 94143-2280, USA.

出版信息

Biol Chem. 2010 Apr;391(4):425-33. doi: 10.1515/BC.2010.047.

Abstract

Engineering of protein-protein interactions is used to enhance the affinity or specificity of proteins, such as antibodies or protease inhibitors, for their targets. However, fully diversifying all residues in a protein-protein interface is often unfeasible. Therefore, we limited our phage library for the serine protease inhibitor ecotin by restricting it to only tetranomial diversity and then targeted all 20 amino acid residues involved in protein recognition. This resulted in a high-affinity and highly specific plasma kallikrein inhibitor, ecotin-Pkal. To validate this approach we dissected the energetic contributions of each wild type (wt) or mutated surface loop to the binding of either plasma kallikrein (PKal) or membrane-type serine protease 1. The analysis demonstrated that a mutation in one loop has opposing effects depending on the sequence of surrounding loops. This finding stresses the cooperative nature of loop-loop interactions and justifies targeting multiple loops with a limited diversity. In contrast to ecotin wt, the specific loop combination of ecotin-Pkal discriminates the subtle structural differences between the active enzymes, PKal and Factor XIIa, and their respective zymogen forms. We used ecotin-Pkal to specifically inhibit contact activation of human plasma at the level mediated by plasma kallikrein.

摘要

蛋白质-蛋白质相互作用的工程化被用于增强蛋白质(如抗体或蛋白酶抑制剂)与其靶标的亲和力或特异性。然而,完全使蛋白质-蛋白质界面中的所有残基多样化通常是不可行的。因此,我们通过将噬菌体文库限制为仅四元多样性来限制用于丝氨酸蛋白酶抑制剂 ecotin 的噬菌体文库,然后针对涉及蛋白质识别的所有 20 个氨基酸残基。这导致了高亲和力和高度特异性的血浆激肽释放酶抑制剂,ecotin-Pkal。为了验证这种方法,我们剖析了每个野生型(wt)或突变表面环对血浆激肽释放酶(PKal)或膜型丝氨酸蛋白酶 1 结合的能量贡献。分析表明,一个环中的突变根据周围环的序列具有相反的效果。这一发现强调了环-环相互作用的协同性质,并证明了用有限的多样性靶向多个环是合理的。与 ecotin wt 相比,ecotin-Pkal 的特定环组合可区分活性酶 PKal 和因子 XIIa 及其各自酶原形式之间的细微结构差异。我们使用 ecotin-Pkal 特异性抑制人血浆在由血浆激肽释放酶介导的水平上的接触激活。

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