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五个牛胰凝乳蛋白酶与P1抑肽酶变体复合物的晶体结构。

Crystal structures of five bovine chymotrypsin complexes with P1 BPTI variants.

作者信息

Czapinska Honorata, Helland Ronny, Smalås Arne O, Otlewski Jacek

机构信息

Laboratory of Protein Engineering, Institute of Biochemistry and Molecular Biology, University of Wroclaw, Tamka 2, 50-137 Wroclaw, Poland.

出版信息

J Mol Biol. 2004 Dec 3;344(4):1005-20. doi: 10.1016/j.jmb.2004.09.088.

Abstract

The bovine chymotrypsin-bovine pancreatic trypsin inhibitor (BPTI) interaction belongs to extensively studied models of protein-protein recognition. The accommodation of the inhibitor P1 residue in the S1 binding site of the enzyme forms the hot spot of this interaction. Mutations introduced at the P1 position of BPTI result in a more than five orders of magnitude difference of the association constant values with the protease. To elucidate the structural aspects of the discrimination between different P1 residues, crystal structures of five bovine chymotrypsin-P1 BPTI variant complexes have been determined at pH 7.8 to a resolution below 2 A. The set includes polar (Thr), ionizable (Glu, His), medium-sized aliphatic (Met) and large aromatic (Trp) P1 residues and complements our earlier studies of the interaction of different P1 side-chains with the S1 pocket of chymotrypsin. The structures have been compared to the complexes of proteases with similar and dissimilar P1 preferences, including Streptomyces griseus proteases B and E, human neutrophil elastase, crab collagenase, bovine trypsin and human thrombin. The S1 sites of these enzymes share a common general shape of significant rigidity. Large and branched P1 residues adapt in their complexes similar conformations regardless of the polarity and size differences between their S1 pockets. Conversely, long and flexible residues such as P1 Met are present in the disordered form and display a conformational diversity despite similar inhibitory properties with respect to most enzymes studied. Thus, the S1 specificity profiles of the serine proteases appear to result from the precise complementarity of the P1-S1 interface and minor conformational adjustments occurring upon the inhibitor binding.

摘要

牛胰凝乳蛋白酶 - 牛胰蛋白酶抑制剂(BPTI)相互作用属于蛋白质 - 蛋白质识别中广泛研究的模型。抑制剂的P1残基在酶的S1结合位点中的容纳形成了这种相互作用的热点。在BPTI的P1位置引入的突变导致与蛋白酶的缔合常数相差五个以上数量级。为了阐明不同P1残基之间区分的结构方面,已在pH 7.8下测定了五种牛胰凝乳蛋白酶 - P1 BPTI变体复合物的晶体结构,分辨率低于2 Å。该集合包括极性(苏氨酸)、可电离(谷氨酸、组氨酸)、中等大小脂肪族(甲硫氨酸)和大芳香族(色氨酸)P1残基,并补充了我们早期关于不同P1侧链与胰凝乳蛋白酶S1口袋相互作用的研究。已将这些结构与具有相似和不同P1偏好的蛋白酶复合物进行了比较,包括灰色链霉菌蛋白酶B和E、人中性粒细胞弹性蛋白酶、蟹胶原酶、牛胰蛋白酶和人凝血酶。这些酶的S1位点具有共同的显著刚性的一般形状。无论其S1口袋之间的极性和大小差异如何,大的和分支的P1残基在其复合物中采用相似的构象。相反,长而灵活的残基如P1甲硫氨酸以无序形式存在,并且尽管对大多数研究的酶具有相似的抑制特性,但仍表现出构象多样性。因此,丝氨酸蛋白酶的S1特异性谱似乎源于P1 - S1界面的精确互补性以及抑制剂结合时发生的微小构象调整。

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