Sucrose metabolism in halotolerant methanotroph Methylomicrobium alcaliphilum 20Z

被引:23
作者
But, Sergey Y. [1 ]
Khmelenina, Valentina N. [1 ]
Reshetnikov, Alexander S. [1 ]
Mustakhimov, Ildar I. [2 ]
Kalyuzhnaya, Marina G. [3 ,4 ]
Trotsenko, Yuri A. [1 ]
机构
[1] Russian Acad Sci, Skryabin Inst Biochem & Physiol Microorganisms, Lab Methylotrophy, Pushchino 142290, Russia
[2] Pushchino State Inst Nat Sci, Pushchino 142290, Russia
[3] San Diego State Univ, Dept Biol, San Diego, CA 92182 USA
[4] Univ Washington, Dept Microbiol, Seattle, WA 98195 USA
基金
俄罗斯科学基金会; 俄罗斯基础研究基金会; 美国国家科学基金会;
关键词
Methylotrophic bacteria; Methylomicrobium alcaliphilum 20Z; Sucrose metabolism; Sucrose-phosphate phosphatase; Amylosucrase; ECTOINE BIOSYNTHESIS GENES; CARBON-DIOXIDE FIXATION; BENSON-BASSHAM CYCLE; PHOSPHATE SYNTHASE; SP-NOV; METHYLOTROPHIC BACTERIUM; HALOTHERMOTHRIX-ORENII; MOLECULAR-CLONING; SODA LAKE; AMYLOSUCRASE;
D O I
10.1007/s00203-015-1080-9
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Sucrose accumulation has been observed in some methylotrophic bacteria utilizing methane, methanol, or methylated amines as a carbon and energy source. In this work, we have investigated the biochemical pathways for sucrose metabolism in the model halotolerant methanotroph Methylomicrobium alcaliphilum 20Z. The genes encoding sucrose-phosphate synthase (Sps), sucrose-phosphate phosphatase (Spp), fructokinase (FruK), and amylosucrase (Ams) were co-transcribed and displayed similar expression levels. Functional Spp and Ams were purified after heterologous expression in Escherichia coli. Recombinant Spp exhibited high affinity for sucrose-6-phosphate and stayed active at very high levels of sucrose (K (i) = 1.0 +/- A 0.6 M). The recombinant amylosucrase obeyed the classical Michaelis-Menten kinetics in the reactions of sucrose hydrolysis and transglycosylation. As a result, the complete metabolic network for sucrose biosynthesis and re-utilization in the non-phototrophic organism was reconstructed for the first time. Comparative genomic studies revealed analogous gene clusters in various Proteobacteria, thus indicating that the ability to produce and metabolize sucrose is widespread among prokaryotes.
引用
收藏
页码:471 / 480
页数:10
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