Walmsley A R, Barrett M P, Bringaud F, Gould G W
Division of Infection and Immunity, University of Glasgow, UK.
Trends Biochem Sci. 1998 Dec;23(12):476-81. doi: 10.1016/s0968-0004(98)01326-7.
Sugar transport across the plasma membrane is one of the most important transport processes. The cloning and expression of cDNAs from a superfamily of related sugar transporters that all adopt a 12-membrane-spanning-domain structure has opened new avenues of investigation, including presteady-state kinetic analysis. Structure-function analyses of mammalian and bacterial sugar transporters, and comparisons of these transporters with those of parasitic trypanosomatids, indicate that different environmental pressures have tailored the evolution of the various members of the sugar-transporter superfamily. Subtle distinctions in the function of these proteins can be related to particular amino acid residue substitutions.
糖跨质膜转运是最重要的转运过程之一。从一个相关糖转运蛋白超家族克隆和表达的cDNA,这些糖转运蛋白均采用12个跨膜结构域结构,这开辟了新的研究途径,包括稳态前动力学分析。对哺乳动物和细菌糖转运蛋白的结构-功能分析,以及将这些转运蛋白与寄生锥虫的转运蛋白进行比较,表明不同的环境压力塑造了糖转运蛋白超家族各成员的进化。这些蛋白质功能上的细微差异可能与特定的氨基酸残基取代有关。