Suppr超能文献

嗜水气单胞菌周质5'-甲硫基腺苷/S-腺苷高半胱氨酸核苷酶的结构与功能分析

Structural and Functional Analyses of Periplasmic 5'-Methylthioadenosine/S-Adenosylhomocysteine Nucleosidase from Aeromonas hydrophila.

作者信息

Xu Yongbin, Wang Lulu, Chen Jinli, Zhao Jing, Fan Shengdi, Dong Yuesheng, Ha Nam-Chul, Quan Chunshan

机构信息

Department of Bioengineering, College of Life Science, Dalian Minzu University , Dalian 116600, Liaoning, China.

Key Laboratory of Biotechnology and Bioresources Utilization (Dalian Minzu University) , Ministry of Education, Dalian, China.

出版信息

Biochemistry. 2017 Oct 10;56(40):5347-5355. doi: 10.1021/acs.biochem.7b00691. Epub 2017 Sep 20.

Abstract

The Gram-negative, rod-shaped bacterium Aeromonas hydrophila has two multifunctional 5'-methylthioadenosine/S-adenosylhomocysteine nucleosidase (MTAN) enzymes, MtaN-1 and MtaN-2, that differ from those in other bacteria. These proteins are essential for several metabolic pathways, including biological methylation, polyamine biosynthesis, methionine recycling, and bacterial quorum sensing. To gain insight into how these two proteins function, we determined four high-resolution crystal structures of MtaN-1 in its apo form and in complex with the substrates S-adenosyl-l-homocysteine, 5'-methylthioadenosine, and 5'-deoxyadenosine. We found that the domain structures were generally similar, although slight differences were evident. The crystal structure demonstrates that AhMtaN-1 has an extension of the binding pocket and revealed that a tryptophan in the active site (Trp199) may play a major role in substrate binding, unlike in other MTAN proteins. Mutation of the Trp199 residue completely abolished the enzyme activity. Trp199 was identified as an active site residue that is essential for catalysis. Furthermore, biochemical characterization of AhMtaN-1 and AhMtaN-2 demonstrated that AhMtaN-1 exhibits inherent trypsin resistance that is higher than that of AhMtaN-2. Additionally, the thermally unfolded AhMtaN-2 protein is capable of refolding into active forms, whereas the thermally unfolded AhMtaN-1 protein does not have this ability. Examining the different biochemical characteristics related to the functional roles of AhMtaN-1 and AhMtaN-2 would be interesting. Indeed, the biochemical characterization of these structural features would provide a structural basis for the design of new antibiotics against A. hydrophila.

摘要

革兰氏阴性杆状细菌嗜水气单胞菌有两种多功能的5'-甲硫腺苷/S-腺苷高半胱氨酸核苷酶(MTAN),即MtaN-1和MtaN-2,它们与其他细菌中的此类酶不同。这些蛋白质对于多种代谢途径至关重要,包括生物甲基化、多胺生物合成、蛋氨酸循环利用以及细菌群体感应。为深入了解这两种蛋白质的功能,我们测定了MtaN-1的四种高分辨率晶体结构,分别为其无配体形式以及与底物S-腺苷-L-高半胱氨酸、5'-甲硫腺苷和5'-脱氧腺苷结合的复合物形式。我们发现,尽管存在一些细微差异,但它们的结构域结构总体相似。晶体结构表明,嗜水气单胞菌MtaN-1(AhMtaN-1)的结合口袋有一个延伸部分,并且揭示了活性位点中的色氨酸(Trp199)可能在底物结合中起主要作用,这与其他MTAN蛋白不同。Trp199残基的突变完全消除了酶活性。Trp199被确定为催化所必需的活性位点残基。此外,对AhMtaN-1和AhMtaN-2的生化特性进行表征表明,AhMtaN-1表现出比AhMtaN-2更高的固有胰蛋白酶抗性。此外,热变性的AhMtaN-2蛋白能够重新折叠成活性形式,而热变性的AhMtaN-1蛋白则没有这种能力。研究与AhMtaN-1和AhMtaN-2功能作用相关的不同生化特性将很有趣。事实上,对这些结构特征的生化表征将为设计针对嗜水气单胞菌的新型抗生素提供结构基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验