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烟酰胺单核苷酸脱酰胺酶系统发育和分子分类的新见解。

New insights into the phylogeny and molecular classification of nicotinamide mononucleotide deamidases.

作者信息

Sánchez-Carrón Guiomar, Martínez-Moñino Ana Belén, Sola-Carvajal Agustín, Takami Hideto, García-Carmona Francisco, Sánchez-Ferrer Álvaro

机构信息

Department of Biochemistry and Molecular Biology-A, Faculty of Biology, Regional Campus of International Excellence "Campus Mare Nostrum", University of Murcia, Campus Espinardo, Murcia, Spain.

出版信息

PLoS One. 2013 Dec 5;8(12):e82705. doi: 10.1371/journal.pone.0082705. eCollection 2013.

Abstract

Nicotinamide mononucleotide (NMN) deamidase is one of the key enzymes of the bacterial pyridine nucleotide cycle (PNC). It catalyzes the conversion of NMN to nicotinic acid mononucleotide, which is later converted to NAD(+) by entering the Preiss-Handler pathway. However, very few biochemical data are available regarding this enzyme. This paper represents the first complete molecular characterization of a novel NMN deamidase from the halotolerant and alkaliphilic bacterium Oceanobacillus iheyensis (OiPncC). The enzyme was active over a broad pH range, with an optimum at pH 7.4, whilst maintaining 90 % activity at pH 10.0. Surprisingly, the enzyme was quite stable at such basic pH, maintaining 61 % activity after 21 days. As regard temperature, it had an optimum at 65 °C but its stability was better below 50 °C. OiPncC was a Michaelian enzyme towards its only substrate NMN, with a K m value of 0.18 mM and a kcat/K m of 2.1 mM(-1) s(-1). To further our understanding of these enzymes, a complete phylogenetic and structural analysis was carried out taking into account the two Pfam domains usually associated with them (MocF and CinA). This analysis sheds light on the evolution of NMN deamidases, and enables the classification of NMN deamidases into 12 different subgroups, pointing to a novel domain architecture never before described. Using a Logo representation, conserved blocks were determined, providing new insights on the crucial residues involved in the binding and catalysis of both CinA and MocF domains. The analysis of these conserved blocks within new protein sequences could permit the more efficient data curation of incoming NMN deamidases.

摘要

烟酰胺单核苷酸(NMN)脱酰胺酶是细菌吡啶核苷酸循环(PNC)的关键酶之一。它催化NMN转化为烟酸单核苷酸,后者通过进入普赖斯-汉德勒途径进一步转化为NAD(+)。然而,关于这种酶的生化数据非常少。本文首次对来自耐盐嗜碱细菌伊贺海洋芽孢杆菌(OiPncC)的一种新型NMN脱酰胺酶进行了完整的分子表征。该酶在较宽的pH范围内具有活性,最适pH为7.4,在pH 10.0时仍保持90%的活性。令人惊讶的是,该酶在这种碱性pH下相当稳定,21天后仍保持61%的活性。在温度方面,它的最适温度为65℃,但在50℃以下稳定性更好。OiPncC对其唯一底物NMN是一种米氏酶,K m值为0.18 mM,kcat/K m为2.1 mM(-1) s(-1)。为了进一步了解这些酶,我们进行了完整的系统发育和结构分析,考虑了通常与它们相关的两个Pfam结构域(MocF和CinA)。该分析揭示了NMN脱酰胺酶的进化情况,并能够将NMN脱酰胺酶分为12个不同的亚组,指出了一种前所未有的新型结构域架构。使用序列标识表示法确定了保守序列块,为CinA和MocF结构域的结合和催化中涉及的关键残基提供了新的见解。对新蛋白质序列中这些保守序列块的分析可以使新进入的NMN脱酰胺酶的数据整理更加高效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9766/3855486/ecfc6de4a355/pone.0082705.g001.jpg

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