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Crystallization and preliminary crystallographic analysis of mannosyl-3-phosphoglycerate synthase from Rubrobacter xylanophilus

机译:木糖单核杆菌甘露糖基-3-磷酸甘油酸合酶的结晶及初步晶体学分析

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摘要

Rubrobacter xylanophilus is the only Gram-positive bacterium known to synthesize the compatible solute mannosylglycerate (MG), which is commonly found in hyperthermophilic archaea and some thermophilic bacteria. Unlike the salt-dependent pattern of accumulation observed in (hyper)thermophiles, in R. xylanophilus MG accumulates constitutively. The synthesis of MG in R. xylanophilus was tracked from GDP-mannose and 3-phosphoglycerate, but the genome sequence of the organism failed to reveal any of the genes known to be involved in this pathway. The native enzyme was purified and its N-terminal sequence was used to identify the corresponding gene (mpgS) in the genome of R. xylanophilus. The gene encodes a highly divergent mannosyl-3-phospho­glycerate synthase (MpgS) without relevant sequence homology to known mannosylphosphoglycerate synthases. In order to understand the specificity and enzymatic mechanism of this novel enzyme, it was expressed in Escherichia coli, purified and crystallized. The crystals thus obtained belonged to the hexagonal space group P6522 and contained two protein molecules per asymmetric unit. The structure was solved by SIRAS using a mercury derivative.
机译:木糖原微生物是已知的唯一可合成相容性甘露糖基甘油酸甘油酯(MG)的革兰氏阳性细菌,而甘露糖基甘露糖甘油酸(MG)通常在超嗜热古细菌和某些嗜热细菌中发现。与(超)嗜热菌中观察到的盐依赖性积累模式不同,木糖嗜生菌MG组成性地积累。从GDP-甘露糖和3-磷酸甘油酸中追踪了木糖支原体中MG的合成,但该生物的基因组序列未能揭示任何已知与该途径有关的基因。纯化了天然酶,并使用其N端序列鉴定了嗜木支原体基因组中的相应基因(mpgS)。该基因编码高度分化的3-磷酸甘露糖酸甘油酯合酶(MpgS),而与已知的甘露糖磷酸磷酸甘油酯合酶没有相关的序列同源性。为了了解这种新型酶的特异性和酶促机制,它在大肠杆菌中表达,纯化和结晶。如此获得的晶体属于六角形空间群P6522,并且每个不对称单元包含两个蛋白质分子。使用汞衍生物通过SIRAS解析结构。

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