首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >II-BGlc a glucose receptor of the bacterial phosphotransferase system: molecular cloning of ptsG and purification of the receptor from an overproducing strain of Escherichia coli.
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II-BGlc a glucose receptor of the bacterial phosphotransferase system: molecular cloning of ptsG and purification of the receptor from an overproducing strain of Escherichia coli.

机译:II-BGlc细菌磷酸转移酶系统的葡萄糖受体:ptsG的分子克隆和从过量生产的大肠杆菌中纯化该受体。

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摘要

The bacterial phosphoenolpyruvate:glycose phosphotransferase system (PTS) consists of interacting cytoplasmic and membrane proteins that catalyze the phosphorylation and translocation of sugar substrates across the cell membrane. One PTS protein, II-BGlc, is the membrane receptor specific for glucose and methyl D-glucopyranosides; the protein has been purified to homogeneity from Salmonella typhimurium [Erni, B., Trachsel, H., Postma, P. & Rosenbusch, J. (1982) J. Biol. Chem. 257, 13726-13730]. In the present experiments, the Escherichia coli ptsG locus, which encodes II-BGlc, was isolated from a transducing phage library and subcloned into plasmid vectors. The resulting plasmids complement the following phenotypic defects of ptsG mutants: growth on glucose, uptake and phosphorylation of methyl alpha-D-glucoside, and repression of the utilization of non-PTS sugars by methyl alpha-glucoside. The transformed cells overproduce II-BGlc 4- to 10-fold, and a Mr 43,000 polypeptide was synthesized from the plasmids in an in vitro transcription/translation system. The E. coli and S. typhimurium II-BGlc proteins differ in their physical properties, and a modified, three-step purification procedure was developed for isolating the E. coli protein.
机译:细菌磷酸烯醇丙酮酸:葡萄糖磷酸转移酶系统(PTS)由相互作用的细胞质和膜蛋白组成,它们催化糖底物的磷酸化和跨细胞膜的转运。一种PTS蛋白II-BGlc是对葡萄糖和甲基D-吡喃葡萄糖苷具有特异性的膜受体。该蛋白质已从鼠伤寒沙门氏菌中纯化至同质[Erni,B.,Trachsel,H.,Postma,P.&Rosenbusch,J.(1982)J. Biol。化学257,13726-13730]。在本实验中,从转导噬菌体文库中分离出编码II-BGlc的大肠杆菌ptsG基因座,并将其亚克隆到质粒载体中。所得质粒补充了ptsG突变体的以下表型缺陷:在葡萄糖上生长,甲基α-D-葡萄糖苷的摄取和磷酸化以及甲基α-葡萄糖苷对非PTS糖利用的抑制。转化的细胞过量产生II-BGlc 4至10倍,并在体外转录/翻译系统中从质粒合成了43,000先生多肽。大肠杆菌和鼠伤寒沙门氏菌II-BGlc蛋白的物理性质不同,因此开发了一种改良的三步纯化程序来分离大肠杆菌蛋白。

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