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Two Homologous Enzymes of the GalU Family in Rhodococcus opacus 1CP—RoGalU1 and RoGalU2

机译:不透明红球菌1CP中GalU家族的两种同源酶—RoGalU1和RoGalU2

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摘要

Uridine-5’-diphosphate (UDP)-glucose is reported as one of the most versatile building blocks within the metabolism of pro- and eukaryotes. The activated sugar moiety is formed by the enzyme UDP-glucose pyrophosphorylase (GalU). Two homologous enzymes (designated as GalU1 and GalU2) are encoded by most strains, known for their capability to degrade numerous compounds, but also to synthesize natural products such as trehalose comprising biosurfactants. To evaluate their functionality respective genes of a trehalose biosurfactant producing model organism— 1CP—were cloned and expressed, proteins produced (yield up to 47 mg per L broth) and initially biochemically characterized. In the case of GalU2, the was determined to be 177 U mg (uridine-5’-triphosphate (UTP)) and to be 0.51 mM (UTP), respectively. Like other GalUs this enzyme seems to be rather specific for the substrates UTP and glucose 1-phosphate, as it accepts only dTTP and galactose 1-phoshate in addition, but both with solely 2% residual activity. In comparison to other bacterial GalU enzymes the GalU2 was found to be somewhat higher in activity (factor 1.8) even at elevated temperatures. However, GalU1 was not obtained in an active form thus it remains enigmatic if this enzyme participates in metabolism.
机译:据报道,尿苷5'-二磷酸(UDP)-葡萄糖是原核生物和真核生物代谢中最通用的组成部分之一。活化的糖部分由酶UDP-葡萄糖焦磷酸化酶(GalU)形成。大多数菌株均编码两种同源酶(分别称为GalU1和GalU2),它们以降解多种化合物的能力而闻名,而且还能够合成天然产物,例如包含生物表面活性剂的海藻糖。为了评估其功能,克隆并表达了产生海藻糖生物表面活性剂的模型生物的各自基因-1CP,产生了蛋白质(每升肉汤最高产量47 mg),并进行了生化分析。在GalU2的情况下,分别确定为177 U mg(尿苷5'-三磷酸(UTP))和0.51 mM(UTP)。像其他GalUs一样,该酶似乎对底物UTP和1-磷酸葡萄糖相当特异,因为它仅接受dTTP和1-磷酸半乳糖,但两者仅具有2%的残留活性。与其他细菌GalU酶相比,即使在高温下,GalU2的活性也有所提高(1.8倍)。但是,GalU1不是以活性形式获得的,因此,如果该酶参与新陈代谢,它将保持神秘状态。

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