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一种具有双重活性的新型植物酶:一种非典型的Nudix水解酶和二肽基肽酶III。

A novel plant enzyme with dual activity: an atypical Nudix hydrolase and a dipeptidyl peptidase III.

作者信息

Karačić Zrinka, Vukelić Bojana, Ho Gabrielle H, Jozić Iva, Sučec Iva, Salopek-Sondi Branka, Kozlović Marija, Brenner Steven E, Ludwig-Müller Jutta, Abramić Marija

出版信息

Biol Chem. 2017 Jan 1;398(1):101-112. doi: 10.1515/hsz-2016-0141.

Abstract

In a search for plant homologues of dipeptidyl peptidase III (DPP III) family, we found a predicted protein from the moss Physcomitrella patens (UniProt entry: A9TLP4), which shared 61% sequence identity with the Arabidopsis thaliana uncharacterized protein, designated Nudix hydrolase 3. Both proteins contained all conserved regions of the DPP III family, but instead of the characteristic hexapeptide HEXXGH zinc-binding motif, they possessed a pentapeptide HEXXH, and at the N-terminus, a Nudix box, a hallmark of Nudix hydrolases, known to act upon a variety of nucleoside diphosphate derivatives. To investigate their biochemical properties, we expressed heterologously and purified Physcomitrella (PpND) and Arabidopsis (AtND) protein. Both hydrolyzed, with comparable catalytic efficiency, the isopentenyl diphosphate (IPP), a universal precursor for the biosynthesis of isoprenoid compounds. In addition, PpND dephosphorylated four purine nucleotides (ADP, dGDP, dGTP, and 8-oxo-dATP) with strong preference for oxidized dATP. Furthermore, PpND and AtND showed DPP III activity against dipeptidyl-2-arylamide substrates, which they cleaved with different specificity. This is the first report of a dual activity enzyme, highly conserved in land plants, which catalyzes the hydrolysis of a peptide bond and of a phosphate bond, acting both as a dipeptidyl peptidase III and an atypical Nudix hydrolase.

摘要

在寻找二肽基肽酶III(DPP III)家族的植物同源物时,我们从苔藓小立碗藓中发现了一种预测蛋白(UniProt登录号:A9TLP4),它与拟南芥的未知蛋白(命名为Nudix水解酶3)具有61%的序列同一性。这两种蛋白都包含DPP III家族的所有保守区域,但它们没有特征性的六肽HEXXGH锌结合基序,而是拥有一个五肽HEXXH,并且在N端有一个Nudix框,这是Nudix水解酶的标志,已知其作用于多种核苷二磷酸衍生物。为了研究它们的生化特性,我们进行了异源表达并纯化了小立碗藓(PpND)和拟南芥(AtND)的蛋白。二者都以相当的催化效率水解了异戊烯基二磷酸(IPP),IPP是类异戊二烯化合物生物合成的通用前体。此外,PpND能使四种嘌呤核苷酸(ADP、dGDP、dGTP和8-氧代-dATP)去磷酸化,对氧化型dATP有强烈偏好。此外,PpND和AtND对二肽基-2-芳基酰胺底物表现出DPP III活性,它们以不同的特异性切割这些底物。这是关于一种在陆地植物中高度保守的双活性酶的首次报道,该酶催化肽键和磷酸键的水解,兼具二肽基肽酶III和非典型Nudix水解酶的功能。

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