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晶格中捕获的催化不同状态:酰基氨基酰基肽酶的底物结合态和清除剂态及其对功能的影响。

Catalytically distinct states captured in a crystal lattice: the substrate-bound and scavenger states of acylaminoacyl peptidase and their implications for functionality.

作者信息

Menyhárd Dóra Karancsiné, Orgován Zoltán, Szeltner Zoltán, Szamosi Ilona, Harmat Veronika

机构信息

MTA-ELTE Protein Modelling Research Group, Pázmány Péter sétány 1/A, 1117 Budapest, Hungary.

Laboratory of Structural Chemistry and Biology, Institute of Chemistry, Eötvös Loránd University, Pázmány Péter sétány 1/A, 1117 Budapest, Hungary.

出版信息

Acta Crystallogr D Biol Crystallogr. 2015 Mar;71(Pt 3):461-72. doi: 10.1107/S1399004714026819. Epub 2015 Feb 26.

DOI:10.1107/S1399004714026819
PMID:25760596
Abstract

Acylaminoacyl peptidase (AAP) is an oligopeptidase that only cleaves short peptides or protein segments. In the case of AAP from Aeropyrum pernix (ApAAP), previous studies have led to a model in which the clamshell-like opening and closing of the enzyme provides the means of substrate-size selection. The closed form of the enzyme is catalytically active, while opening deactivates the catalytic triad. The crystallographic results presented here show that the open form of ApAAP is indeed functionally disabled. The obtained crystal structures also reveal that the closed form is penetrable to small ligands: inhibitor added to the pre-formed crystal was able to reach the active site of the rigidified protein, which is only possible through the narrow channel of the propeller domain. Molecular-dynamics simulations investigating the structure of the complexes formed with longer peptide substrates showed that their binding within the large crevice of the closed form of ApAAP leaves the enzyme structure unperturbed; however, their accessing the binding site seems more probable when assisted by opening of the enzyme. Thus, the open form of ApAAP corresponds to a scavenger of possible substrates, the actual cleavage of which only takes place if the enzyme is able to re-close.

摘要

酰基氨基酰基肽酶(AAP)是一种仅能切割短肽或蛋白质片段的寡肽酶。就来自嗜热栖热菌的AAP(ApAAP)而言,先前的研究得出了一个模型,即该酶类似蛤壳的开合提供了底物大小选择的方式。酶的闭合形式具有催化活性,而打开则使催化三联体失活。此处呈现的晶体学结果表明,ApAAP的开放形式在功能上确实是无活性的。所获得的晶体结构还揭示,闭合形式可被小配体穿透:添加到预先形成的晶体中的抑制剂能够到达刚性化蛋白质的活性位点,而这只有通过螺旋桨结构域的狭窄通道才有可能。研究与较长肽底物形成的复合物结构的分子动力学模拟表明,它们在ApAAP闭合形式的大裂缝内结合不会干扰酶的结构;然而,在酶打开的辅助下,它们进入结合位点似乎更有可能。因此,ApAAP的开放形式相当于可能底物的清除剂,只有当酶能够重新闭合时才会实际发生切割。

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