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Structural and functional analysis of the gpsA gene product of Archaeoglobus fulgidus: A glycerol-3-phosphate dehydrogenase with an unusual NADP+ preference.

机译:细足古生球菌gpsA基因产物的结构和功能分析:一种具有非典型NADP +偏好的3磷酸甘油脱氢酶。

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摘要

NAD(+)-dependent glycerol-3-phosphate dehydrogenase (G3PDH) is generally absent in archaea, because archaea, unlike eukaryotes and eubacteria, utilize glycerol-1-phosphate instead of glycerol-3-phosphate for the biosynthesis of membrane lipids. Surprisingly, the genome of the hyperthermophilic archaeon Archaeoglobus fulgidus comprises a G3PDH ortholog, gpsA, most likely due to horizontal gene transfer from a eubacterial organism. Biochemical characterization proved G3PDH-like activity of the recombinant gpsA gene product. However, unlike other G3PDHs, the up to 85 degrees C thermostable A. fulgidus G3PDH exerted a 15-fold preference for NADPH over NADH. The A. fulgidus G3PDH bears the hallmarks of adaptation to halotolerance and thermophilicity, because its 1.7-A crystal structure showed a high surface density for negative charges and 10 additional intramolecular salt bridges compared to a mesophilic G3PDH structure. Whereas all amino acid residues required for dihydroxyacetone phosphate binding and reductive catalysis are highly conserved, the binding site for the adenine moiety of the NAD(P) cosubstrate shows a structural variation that reflects the observed NADPH preference, for example, by a putative salt bridge between R49 and the 2'-phosphate.
机译:通常,古细菌中不存在NAD(+)依赖性的3-磷酸甘油脱氢酶(G3PDH),因为与真核生物和真细菌不同,古细菌利用1-磷酸甘油而不是3-磷酸甘油来进行膜脂质的生物合成。出乎意料的是,超嗜热古生细菌古细菌的基因组包含G3PDH直向同源物gpsA,最有可能是由于从真细菌生物体水平转移基因而引起的。生化特征证明了重组gpsA基因产物的G3PDH样活性。但是,与其他G3PDH不同的是,高达85摄氏度的热稳定性烟曲霉G3PDH对NADPH的偏好是对NADH的15倍。 fulgidus G3PDH具有适应耐盐性和嗜热性的特点,因为与中温G3PDH结构相比,其1.7-A晶体结构显示出高的负电荷表面密度和10个额外的分子内盐桥。尽管磷酸二羟基丙酮结合和还原催化所需的所有氨基酸残基都高度保守,但NAD(P)共底物的腺嘌呤部分的结合位点显示出结构变异,该变异反映了观察到的NADPH偏好,例如通过推定的盐桥在R49和2'-磷酸之间。

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