Archaeoglobus fulg'/> Cupin-Type Phosphoglucose Isomerases (Cupin-PGIs) Constitute a Novel Metal-Dependent PGI Family Representing a Convergent Line of PGI Evolution
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Cupin-Type Phosphoglucose Isomerases (Cupin-PGIs) Constitute a Novel Metal-Dependent PGI Family Representing a Convergent Line of PGI Evolution

机译:铜杯型磷酸葡萄糖异构酶(Cupin-PGI)构成了代表PGI进化趋同线的新型金属依赖性PGI家族。

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Cupin-type phosphoglucose isomerases (cPGIs) were identified in some archaeal and bacterial genomes and the respective coding function of cpgi's from the euryarchaeota Archaeoglobus fulgidus and Methanosarcina mazei, as well as the bacteria Salmonella enterica serovar Typhimurium and Ensifer meliloti, was proven by functional overexpression. These cPGIs and the cPGIs from Pyrococcus and Thermococcus spp. represent the cPGI family and were compared with respect to kinetic, inhibitory, thermophilic, and metal-binding properties. cPGIs showed a high specificity for the substrates fructose-6-phosphate and glucose-6-phosphate and were inhibited by millimolar concentrations of sorbitol-6-phosphate, erythrose-4-phosphate, and 6-phosphogluconate. Treatment of cPGIs with EDTA resulted in a complete loss of catalytic activity, which could be regained by the addition of some divalent cations, most effectively by Fe2+ and Ni2+, indicating a metal dependence of cPGI activity. The motifs TX3PX3GXEX3TXGHXHX6-11EXY and PPX3HX3N were deduced as the two signature patterns of the novel cPGI family. Phylogenetic analysis suggests lateral gene transfer for the bacterial cPGIs from euryarchaeota.
机译:在一些古细菌和细菌基因组中鉴定出了铜蛋白型磷酸葡萄糖异构酶(cPGI),并鉴定了来自古生弓形虫和花色甲烷单胞菌的 cpgi 的编码功能。 ,以及细菌 Salmonella enterica 血清型鼠伤寒沙门氏菌和 Ensifer meliloti ,均已通过功能性过表达得到证实。这些cPGI和热球菌热球菌 spp的cPGI。代表cPGI家族,并就动力学,抑制,嗜热和金属结合性质进行了比较。 cPGI对底物6磷酸果糖和6磷酸葡萄糖具有很高的特异性,并被浓度为6磷酸山梨糖醇,4磷酸赤藓糖和6磷酸葡萄糖酸抑制。用EDTA处理cPGIs导致催化活性完全丧失,可以通过添加一些二价阳离子来恢复,最有效的是Fe 2 + 和Ni 2 + ,表明cPGI活性与金属有关。 TX 3 PX 3 GXEX 3 TXGHXHX 6-11 EXY和PPX 3 HX 3 N被推导为新型cPGI家族的两个签名模式。系统发生学分析表明,来自euryarchaeota的细菌cPGI的侧向基因转移。

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