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本文引用的文献

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Processing of X-ray diffraction data collected in oscillation mode.振荡模式下收集的X射线衍射数据的处理。
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MEROPS: the database of proteolytic enzymes, their substrates and inhibitors.MEROPs:蛋白水解酶、其底物和抑制剂数据库。
Nucleic Acids Res. 2012 Jan;40(Database issue):D343-50. doi: 10.1093/nar/gkr987. Epub 2011 Nov 15.
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Replacement of the axial copper ligand methionine with lysine in amicyanin converts it to a zinc-binding protein that no longer binds copper.在天青蛋白中,将轴向铜配体蛋氨酸替换为赖氨酸,会将其转化为一种不再结合铜的锌结合蛋白。
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Combination inhibition of the renin-angiotensin system: is more better?联合抑制肾素-血管紧张素系统:越多越好吗?
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Local ocular renin-angiotensin system - a target for glaucoma therapy?局部眼内肾素-血管紧张素系统 - 青光眼治疗的新靶点?
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REFMAC5 for the refinement of macromolecular crystal structures.用于大分子晶体结构精修的REFMAC5
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Using SAD data in Phaser.在相位器中使用SAD数据。
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Regulation of the renin expression in the retinal pigment epithelium by systemic stimuli.全身刺激对视网膜色素上皮中肾素表达的调节。
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哺乳动物四面体型天冬氨酰氨基肽酶的底物特异性和金属激活的深入了解。

Insights into substrate specificity and metal activation of mammalian tetrahedral aspartyl aminopeptidase.

机构信息

Department of Pharmacology, School of Medicine, Case Western Reserve University, Cleveland, Ohio 44106-4965, USA.

出版信息

J Biol Chem. 2012 Apr 13;287(16):13356-70. doi: 10.1074/jbc.M112.347518. Epub 2012 Feb 22.

DOI:10.1074/jbc.M112.347518
PMID:22356908
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3339940/
Abstract

Aminopeptidases are key enzymes involved in the regulation of signaling peptide activity. Here, we present a detailed biochemical and structural analysis of an evolutionary highly conserved aspartyl aminopeptidase called DNPEP. We show that this peptidase can cleave multiple physiologically relevant substrates, including angiotensins, and thus may play a key role in regulating neuron function. Using a combination of x-ray crystallography, x-ray absorption spectroscopy, and single particle electron microscopy analysis, we provide the first detailed structural analysis of DNPEP. We show that this enzyme possesses a binuclear zinc-active site in which one of the zinc ions is readily exchangeable with other divalent cations such as manganese, which strongly stimulates the enzymatic activity of the protein. The plasticity of this metal-binding site suggests a mechanism for regulation of DNPEP activity. We also demonstrate that DNPEP assembles into a functionally relevant tetrahedral complex that restricts access of peptide substrates to the active site. These structural data allow rationalization of the enzyme's preference for short peptide substrates with N-terminal acidic residues. This study provides a structural basis for understanding the physiology and bioinorganic chemistry of DNPEP and other M18 family aminopeptidases.

摘要

氨肽酶是参与信号肽活性调节的关键酶。在这里,我们对一种进化上高度保守的天冬氨酰氨肽酶(称为 DNPEP)进行了详细的生化和结构分析。我们表明,这种肽酶可以切割多种生理相关的底物,包括血管紧张素,因此可能在调节神经元功能方面发挥关键作用。我们使用 X 射线晶体学、X 射线吸收光谱学和单颗粒电子显微镜分析相结合的方法,提供了 DNPEP 的第一个详细的结构分析。我们表明,该酶具有双核锌活性位点,其中一个锌离子可与其他二价阳离子(如锰)轻易交换,这强烈刺激了蛋白质的酶活性。这种金属结合位点的可塑性表明了 DNPEP 活性调节的机制。我们还证明,DNPEP 组装成一个功能相关的四面体复合物,限制了肽底物进入活性位点的通道。这些结构数据解释了该酶对具有 N 端酸性残基的短肽底物的偏好。本研究为理解 DNPEP 和其他 M18 家族氨肽酶的生理学和生物无机化学提供了结构基础。