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异天冬氨酰氨基肽酶与L-天冬氨酸复合物的晶体结构

Crystal structure of isoaspartyl aminopeptidase in complex with L-aspartate.

作者信息

Michalska Karolina, Brzezinski Krzysztof, Jaskolski Mariusz

机构信息

Department of Crystallography, Faculty of Chemistry, A. Mickiewicz University, Poznan 60-780, Poland.

出版信息

J Biol Chem. 2005 Aug 5;280(31):28484-91. doi: 10.1074/jbc.M504501200. Epub 2005 Jun 9.

Abstract

The crystal structure of Escherichia coli isoaspartyl aminopeptidase/asparaginase (EcAIII), an enzyme belonging to the N-terminal nucleophile (Ntn)-hydrolases family, has been determined at 1.9-A resolution for a complex obtained by cocrystallization with l-aspartate, which is a product of both enzymatic reactions catalyzed by EcAIII. The enzyme is a dimer of heterodimers, (alphabeta)(2). The (alphabeta) heterodimer, which arises by autoproteolytic cleavage of the immature protein, exhibits an alphabetabetaalpha-sandwich fold, typical for Ntn-hydrolases. The asymmetric unit contains one copy of the EcAIII.Asp complex, with clearly visible l-aspartate ligands, one bound in each of the two active sites of the enzyme. The l-aspartate ligand is located near Thr(179), the N-terminal residue of subunit beta liberated in the autoproteolytic event. Structural comparisons with the free form of EcAIII reveal that there are no major rearrangements of the active site upon aspartate binding. Although the ligand binding mode is similar to that observed in an l-aspartate complex of the related enzyme human aspartylglucosaminidase, the architecture of the EcAIII active site sheds light on the question of substrate specificity and explains why EcAIII is not able to hydrolyze glycosylated asparagine substrates.

摘要

大肠杆菌异天冬氨酰氨基肽酶/天冬酰胺酶(EcAIII)属于N端亲核体(Ntn)水解酶家族,其晶体结构已通过与L-天冬氨酸共结晶获得的复合物以1.9埃分辨率测定,L-天冬氨酸是EcAIII催化的两种酶促反应的产物。该酶是异二聚体的二聚体,即(αβ)₂。通过未成熟蛋白质的自蛋白水解切割产生的(αβ)异二聚体呈现出Ntn水解酶典型的αββα三明治折叠。不对称单元包含一份EcAIII·Asp复合物,有清晰可见的L-天冬氨酸配体,在酶的两个活性位点各结合一个。L-天冬氨酸配体位于Thr(179)附近,Thr(179)是自蛋白水解事件中释放的β亚基的N端残基。与EcAIII游离形式的结构比较表明,天冬氨酸结合后活性位点没有重大重排。尽管配体结合模式与在相关酶人天冬氨酰葡糖胺酶的L-天冬氨酸复合物中观察到的相似,但EcAIII活性位点的结构为底物特异性问题提供了线索,并解释了EcAIII为何不能水解糖基化天冬酰胺底物。

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