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本文引用的文献

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Structure of the recombinant BPTI/Kunitz-type inhibitor rShPI-1A from the marine invertebrate Stichodactyla helianthus.来自海洋无脊椎动物太阳海葵的重组BPTI/库尼茨型抑制剂rShPI-1A的结构
Acta Crystallogr Sect F Struct Biol Cryst Commun. 2012 Nov 1;68(Pt 11):1289-93. doi: 10.1107/S1744309112039085. Epub 2012 Oct 26.
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Structural insights into serine protease inhibition by a marine invertebrate BPTI Kunitz-type inhibitor.海洋无脊椎动物 BPTI Kunitz 型抑制剂对丝氨酸蛋白酶抑制作用的结构见解。
J Struct Biol. 2012 Nov;180(2):271-9. doi: 10.1016/j.jsb.2012.08.009. Epub 2012 Sep 5.
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Neutrophil elastase as a target in lung cancer.中性粒细胞弹性蛋白酶作为肺癌的靶点。
Anticancer Agents Med Chem. 2012 Jul;12(6):565-79. doi: 10.2174/187152012800617696.
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Recombinant expression of ShPI-1A, a non-specific BPTI-Kunitz-type inhibitor, and its protection effect on proteolytic degradation of recombinant human miniproinsulin expressed in Pichia pastoris.重组表达 ShPI-1A,一种非特异性 BPTI-Kunitz 型抑制剂,及其对毕赤酵母表达的重组人胰岛素原的蛋白水解降解的保护作用。
FEMS Yeast Res. 2011 Nov;11(7):575-86. doi: 10.1111/j.1567-1364.2011.00749.x. Epub 2011 Sep 8.
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The P(2)' residue is a key determinant of mesotrypsin specificity: engineering a high-affinity inhibitor with anticancer activity.P(2)’残基是糜蛋白酶特异性的关键决定因素:用工程技术设计具有抗癌活性的高亲和力抑制剂。
Biochem J. 2011 Nov 15;440(1):95-105. doi: 10.1042/BJ20110788.
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Neutrophil elastase, proteinase 3, and cathepsin G as therapeutic targets in human diseases.中性粒细胞弹性蛋白酶、蛋白酶 3 和组织蛋白酶 G 作为人类疾病的治疗靶点。
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Features and development of Coot.Coot的特点与发展
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PHENIX: a comprehensive Python-based system for macromolecular structure solution.PHENIX:一个基于Python的用于大分子结构解析的综合系统。
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MolProbity: all-atom structure validation for macromolecular crystallography.MolProbity:用于大分子晶体学的全原子结构验证
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ISOLATION FROM BEEF PANCREAS OF CRYSTALLINE TRYPSINOGEN, TRYPSIN, A TRYPSIN INHIBITOR, AND AN INHIBITOR-TRYPSIN COMPOUND.从牛胰中分离出结晶胰蛋白酶原、胰蛋白酶、胰蛋白酶抑制剂和抑制剂-胰蛋白酶复合物。
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一种Kunitz型抑制剂与类弹性蛋白酶复合物的三维结构

Three-dimensional Structure of a Kunitz-type Inhibitor in Complex with an Elastase-like Enzyme.

作者信息

García-Fernández Rossana, Perbandt Markus, Rehders Dirk, Ziegelmüller Patrick, Piganeau Nicolas, Hahn Ulrich, Betzel Christian, Chávez María de Los Ángeles, Redecke Lars

机构信息

From the Centro de Estudio de Proteínas, Facultad de Biología, Universidad de la Habana, 20146 Habana, Cuba.

the Institute of Biochemistry and Molecular Biology, Department of Chemistry, University of Hamburg, 22761 Hamburg, Germany, the Hamburg Centre for Ultrafast Imaging, 22761 Hamburg, Germany, and.

出版信息

J Biol Chem. 2015 May 29;290(22):14154-65. doi: 10.1074/jbc.M115.647586. Epub 2015 Apr 15.

DOI:10.1074/jbc.M115.647586
PMID:25878249
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4447985/
Abstract

Elastase-like enzymes are involved in important diseases such as acute pancreatitis, chronic inflammatory lung diseases, and cancer. Structural insights into their interaction with specific inhibitors will contribute to the development of novel anti-elastase compounds that resist rapid oxidation and proteolysis. Proteinaceous Kunitz-type inhibitors homologous to the bovine pancreatic trypsin inhibitor (BPTI) provide a suitable scaffold, but the structural aspects of their interaction with elastase-like enzymes have not been elucidated. Here, we increased the selectivity of ShPI-1, a versatile serine protease inhibitor from the sea anemone Stichodactyla helianthus with high biomedical and biotechnological potential, toward elastase-like enzymes by substitution of the P1 residue (Lys(13)) with leucine. The variant (rShPI-1/K13L) exhibits a novel anti-porcine pancreatic elastase (PPE) activity together with a significantly improved inhibition of human neuthrophil elastase and chymotrypsin. The crystal structure of the PPE·rShPI-1/K13L complex determined at 2.0 Å resolution provided the first details of the canonical interaction between a BPTI-Kunitz-type domain and elastase-like enzymes. In addition to the essential impact of the variant P1 residue for complex stability, the interface is improved by increased contributions of the primary and secondary binding loop as compared with similar trypsin and chymotrypsin complexes. A comparison of the interaction network with elastase complexes of canonical inhibitors from the chelonian in family supports a key role of the P3 site in ShPI-1 in directing its selectivity against pancreatic and neutrophil elastases. Our results provide the structural basis for site-specific mutagenesis to further improve the binding affinity and/or direct the selectivity of BPTI-Kunitz-type inhibitors toward elastase-like enzymes.

摘要

类弹性蛋白酶参与诸如急性胰腺炎、慢性炎症性肺病和癌症等重要疾病。对其与特定抑制剂相互作用的结构洞察将有助于开发抗快速氧化和蛋白水解的新型抗弹性蛋白酶化合物。与牛胰蛋白酶抑制剂(BPTI)同源的蛋白质类库尼茨型抑制剂提供了合适的支架,但它们与类弹性蛋白酶相互作用的结构方面尚未阐明。在这里,我们通过将P1残基(Lys(13))替换为亮氨酸,提高了来自具有高生物医学和生物技术潜力的海葵地毯海葵的多功能丝氨酸蛋白酶抑制剂ShPI-1对类弹性蛋白酶的选择性。变体(rShPI-1/K13L)表现出新型的抗猪胰弹性蛋白酶(PPE)活性,同时对人中性粒细胞弹性蛋白酶和胰凝乳蛋白酶的抑制作用显著改善。以2.0 Å分辨率测定的PPE·rShPI-1/K13L复合物的晶体结构提供了BPTI-库尼茨型结构域与类弹性蛋白酶之间典型相互作用的首个细节。除了变体P1残基对复合物稳定性的重要影响外,与类似的胰蛋白酶和胰凝乳蛋白酶复合物相比,一级和二级结合环贡献的增加改善了界面。与龟鳖科典型抑制剂的弹性蛋白酶复合物相互作用网络的比较支持了ShPI-1中P3位点在指导其对胰腺和中性粒细胞弹性蛋白酶的选择性方面的关键作用。我们的结果为位点特异性诱变提供了结构基础,以进一步提高BPTI-库尼茨型抑制剂对类弹性蛋白酶的结合亲和力和/或指导其选择性。