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木瓜蛋白酶家族蛋白酶博来霉素水解酶催化残基的诱变与晶体学研究:活性位点结构的新见解

Mutagenesis and crystallographic studies of the catalytic residues of the papain family protease bleomycin hydrolase: new insights into active-site structure.

作者信息

O'Farrell Paul A, Joshua-Tor Leemor

机构信息

W.M. Keck Structural Biology Laboratory, Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724, USA.

出版信息

Biochem J. 2007 Jan 15;401(2):421-8. doi: 10.1042/BJ20060641.

Abstract

Bleomycin hydrolase (BH) is a hexameric papain family cysteine protease which is involved in preparing peptides for antigen presentation and has been implicated in tumour cell resistance to bleomycin chemotherapy. Structures of active-site mutants of yeast BH yielded unexpected results. Replacement of the active-site asparagine with alanine, valine or leucine results in the destabilization of the histidine side chain, demonstrating unambiguously the role of the asparagine residue in correctly positioning the histidine for catalysis. Replacement of the histidine with alanine or leucine destabilizes the asparagine position, indicating a delicate arrangement of the active-site residues. In all of the mutants, the C-terminus of the protein, which lies in the active site, protrudes further into the active site. All mutants were compromised in their catalytic activity. The structures also revealed the importance of a tightly bound water molecule which stabilizes a loop near the active site and which is conserved throughout the papain family. It is displaced in a number of the mutants, causing destabilization of this loop and a nearby loop, resulting in a large movement of the active-site cysteine. The results imply that this water molecule plays a key structural role in this family of enzymes.

摘要

博来霉素水解酶(BH)是一种六聚体木瓜蛋白酶家族的半胱氨酸蛋白酶,参与为抗原呈递准备肽段,并且与肿瘤细胞对博来霉素化疗的抗性有关。酵母BH活性位点突变体的结构产生了意想不到的结果。用丙氨酸、缬氨酸或亮氨酸取代活性位点的天冬酰胺会导致组氨酸侧链不稳定,明确证明了天冬酰胺残基在正确定位组氨酸以进行催化中的作用。用丙氨酸或亮氨酸取代组氨酸会使天冬酰胺位置不稳定,表明活性位点残基的排列很精细。在所有突变体中,位于活性位点的蛋白质C末端进一步伸入活性位点。所有突变体的催化活性都受到损害。这些结构还揭示了一个紧密结合的水分子的重要性,它稳定了活性位点附近的一个环,并且在整个木瓜蛋白酶家族中是保守的。它在一些突变体中被取代,导致这个环和附近一个环的不稳定,从而导致活性位点半胱氨酸的大幅移动。结果表明,这个水分子在这类酶中起关键的结构作用。

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