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首页> 外文期刊>Protein Engineering >The role of Asn14 in the stability and conformation of the reactive-site loop of winged bean chymotrypsin inhibitor: crystal structures of two point mutants Asn14-->Lys and Asn14-->Asp.
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The role of Asn14 in the stability and conformation of the reactive-site loop of winged bean chymotrypsin inhibitor: crystal structures of two point mutants Asn14-->Lys and Asn14-->Asp.

机译:Asn14在四棱豆胰凝乳蛋白酶抑制剂反应位环的稳定性和构象中的作用:两个点突变体Asn14-> Lys和Asn14-> Asp的晶体结构。

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    摘要

    A double-headed chymotrypsin inhibitor, WCI, from winged bean seeds was cloned for structural and biochemical studies. The inhibitor was subjected to two point mutations at a conserved position, Asn14. This residue, known to have a pivotal role in stabilizing the first reactive-site loop (Gln63-Phe68) of the inhibitor, is highly conserved in the sequences of the other members of Kunitz (STI) family as well as in the sequences of Kazal family of serine protease inhibitors. The mutants, N14K and N14D, were subjected to biochemical assay and their characteristics were compared with those of the recombinant inhibitor (rWCI). Crystallographic studies of the recombinant and the mutant proteins are discussed. These studies were primarily aimed at understanding the importance of the protein scaffolding towards the conformational rigidity of the reactive-site loop. Our analysis reveals that, as the Lys14 side chain takes an unusual fold in N14K and the Asp14 side chain in N14D interacts with the loop residues by water-mediated hydrogen bonds, the canonical conformation of the loop has remained effectively intact in both the mutant structures. However, minor alterations such as a 2-fold increase in the inhibitory affinity towards the cognate enzyme were observed.
    机译:从四棱豆种子中提取了双头胰凝乳蛋白酶抑制剂WCI,用于结构和生化研究。该抑制剂在一个保守的位置Asn14处发生了两个点突变。已知该残基在稳定抑制剂的第一个反应位点环(Gln63-Phe68)中起关键作用,在Kunitz(STI)家族其他成员的序列以及Kazal序列中高度保守丝氨酸蛋白酶抑制剂家族。对突变体N14K和N14D进行生化分析,并将其特性与重组抑制剂(rWCI)进行比较。讨论了重组蛋白和突变蛋白的晶体学研究。这些研究主要旨在了解蛋白质支架对反应位点环构象刚性的重要性。我们的分析表明,由于Lys14侧链在N14K中发生异常折叠,而N14D中的Asp14侧链通过水介导的氢键与环残基相互作用,因此两个突变结构中环的规范构象均保持有效。但是,观察到较小的变化,例如对同源酶的抑制亲和力增加了2倍。

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