Characterization of the sorbitol dehydrogenase SmoS from Sinorhizobium meliloti 1021

被引:4
作者
Kohlmeier, MacLean G. [1 ]
Bailey-Elkin, Ben A. [1 ]
Mark, Brian L. [1 ]
Oresnik, Ivan J. [1 ]
机构
[1] Univ Manitoba, Dept Microbiol, Winnipeg, MB, Canada
来源
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY | 2021年 / 77卷
基金
加拿大自然科学与工程研究理事会;
关键词
sorbitol; galactitol; dehydrogenase; oxidation; SmoS; Sinorhizobium meliloti; SHORT-CHAIN DEHYDROGENASE/REDUCTASE; RHODOBACTER-SPHAEROIDES; SUBSTRATE-INHIBITION; METABOLISM; TAGATOSE; CLONING; THERMOSTABILITY; NOMENCLATURE; MECHANISM; TRANSPORT;
D O I
10.1107/S2059798321001017
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Sinorhizobium meliloti 1021 is a Gram-negative alphaproteobacterium with a robust capacity for carbohydrate metabolism. The enzymes that facilitate these reactions assist in the survival of the bacterium across a range of environmental niches, and they may also be suitable for use in industrial processes. SmoS is a dehydrogenase that catalyzes the oxidation of the commonly occurring sugar alcohols sorbitol and galactitol to fructose and tagatose, respectively, using NAD(+) as a cofactor. The main objective of this study was to evaluate SmoS using biochemical techniques. The nucleotide sequence was codon-optimized for heterologous expression in Escherichia coli BL21 (DE3) Gold cells and the protein was subsequently overexpressed and purified. Size-exclusion chromatography and X-ray diffraction experiments suggest that SmoS is a tetramer. SmoS was crystallized, and crystals obtained in the absence of substrate diffracted to 2.1 angstrom resolution and those of a complex with sorbitol diffracted to 2.0 angstrom resolution. SmoS was characterized kinetically and shown to have a preference for sorbitol despite having a higher affinity for galactitol. Computational liganddocking experiments suggest that tagatose binds the protein in a more energetically favourable complex than fructose, which is retained in the active site over a longer time frame following oxidation and reduces the rate of the reaction. These results supplement the inventory of biomolecules with potential for industrial applications and enhance the understanding of metabolism in the model organism S. meliloti.
引用
收藏
页码:380 / 390
页数:11
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