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大肠杆菌糖磷酸转运系统的重组

Reconstitution of sugar phosphate transport systems of Escherichia coli.

作者信息

Ambudkar S V, Larson T J, Maloney P C

出版信息

J Biol Chem. 1986 Jul 15;261(20):9083-6.

PMID:3522583
Abstract

Studies with Escherichia coli cells showed that the transport systems encoded by glpT (sn-glycerol 3-phosphate transport) and uhpT (hexose phosphate transport) catalyze a reversible 32Pi:Pi exchange. This reaction could be used to monitor the glpT or uhpT activities during reconstitution. Membranes from suitably constructed strains were extracted with octylglucoside in the presence of lipid and glycerol, and proteoliposomes were formed by dilution in 0.1 M KPi (pH 7). Both reconstituted systems mediated a 32Pi:Pi exchange which was blocked by the appropriate heterologous substrate, sn-glycerol 3-phosphate (G3P) or 2-deoxyglucose 6-phosphate (2DG6P), with an apparent Ki near 50 microM. In the absence of an imposed cation-motive gradient, Pi-loaded proteoliposomes also transported the expected physiological substrate; Michaelis constants for the transport of G3P or 2DG6P were near 20 microM. The heterologous exchange showed a maximal velocity of 130 nmol/min/mg protein via the glpT system and 11 nmol/min/mg protein for the uhpT system. This difference was expected because the G3P transport activity had been reconstituted from a strain carrying multiple copies of the glpT gene. Taken together, these results suggest that anion exchange may be the molecular basis for transport by the glpT and uhpT proteins.

摘要

对大肠杆菌细胞的研究表明,由glpT(sn-甘油3-磷酸转运)和uhpT(磷酸己糖转运)编码的转运系统催化可逆的32Pi:Pi交换。该反应可用于监测重组过程中glpT或uhpT的活性。在脂质和甘油存在的情况下,用辛基葡糖苷提取来自适当构建菌株的膜,并通过在0.1 M KPi(pH 7)中稀释形成蛋白脂质体。两种重组系统均介导32Pi:Pi交换,该交换被适当的异源底物sn-甘油3-磷酸(G3P)或2-脱氧葡萄糖6-磷酸(2DG6P)阻断,表观Ki接近50 microM。在没有施加阳离子动力梯度的情况下,装载Pi的蛋白脂质体也转运预期的生理底物;G3P或2DG6P转运的米氏常数接近20 microM。通过glpT系统的异源交换显示最大速度为130 nmol/min/mg蛋白质,uhpT系统为11 nmol/min/mg蛋白质。这种差异是预期的,因为G3P转运活性是从携带多个glpT基因拷贝的菌株中重组而来的。综上所述,这些结果表明阴离子交换可能是glpT和uhpT蛋白转运的分子基础。

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