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非光合细菌中蔗糖合酶的鉴定及重组酶的特性分析

Identification of sucrose synthase in nonphotosynthetic bacteria and characterization of the recombinant enzymes.

作者信息

Diricks Margo, De Bruyn Frederik, Van Daele Paul, Walmagh Maarten, Desmet Tom

机构信息

Centre for Industrial Biotechnology and Biocatalysis, Department of Biochemical and Microbial Technology, Ghent University, Coupure Links 653, 9000, Ghent, Belgium.

出版信息

Appl Microbiol Biotechnol. 2015 Oct;99(20):8465-74. doi: 10.1007/s00253-015-6548-7. Epub 2015 Apr 7.

Abstract

Sucrose synthase (SuSy) catalyzes the reversible conversion of sucrose and a nucleoside diphosphate into fructose and nucleotide (NDP)-glucose. To date, only SuSy's from plants and cyanobacteria, both photosynthetic organisms, have been characterized. Here, four prokaryotic SuSy enzymes from the nonphotosynthetic organisms Nitrosomonas Europaea (SuSyNe), Acidithiobacillus caldus (SuSyAc), Denitrovibrio acetiphilus (SusyDa), and Melioribacter roseus (SuSyMr) were recombinantly expressed in Escherichia coli and thoroughly characterized. The purified enzymes were found to display high-temperature optima (up to 80 °C), high activities (up to 125 U/mg), and high thermostability (up to 15 min at 60 °C). Furthermore, SuSyAc, SuSyNe, and SuSyDa showed a clear preference for ADP as nucleotide, as opposed to plant SuSy's which prefer UDP. A structural and mutational analysis was performed to elucidate the difference in NDP preference between eukaryotic and prokaryotic SuSy's. Finally, the physiological relevance of this enzyme specificity is discussed in the context of metabolic pathways and genomic organization.

摘要

蔗糖合酶(SuSy)催化蔗糖和核苷二磷酸可逆转化为果糖和核苷酸(NDP)-葡萄糖。迄今为止,仅对来自植物和蓝细菌这两种光合生物的蔗糖合酶进行了表征。在此,来自非光合生物欧洲亚硝化单胞菌(SuSyNe)、嗜酸氧化亚铁硫杆菌(SuSyAc)、嗜乙酰脱氮弧菌(SusyDa)和玫瑰梅尔杆菌(SuSyMr)的四种原核蔗糖合酶在大肠杆菌中进行了重组表达并得到了全面表征。发现纯化后的酶表现出高温最适温度(高达80°C)、高活性(高达125 U/mg)和高热稳定性(在60°C下长达15分钟)。此外,与偏好UDP的植物蔗糖合酶不同,SuSyAc、SuSyNe和SuSyDa对ADP作为核苷酸表现出明显偏好。进行了结构和突变分析以阐明真核和原核蔗糖合酶在NDP偏好上的差异。最后,在代谢途径和基因组组织的背景下讨论了这种酶特异性的生理相关性。

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