Varela M F, Brooker R J, Wilson T H
Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Bacteriol. 1997 Sep;179(17):5570-3. doi: 10.1128/jb.179.17.5570-5573.1997.
The purpose of this research was to identify amino acid residues that mediate substrate recognition in the lactose carrier of Escherichia coli. The lactose carrier transports the alpha-galactoside sugar melibiose as well as the beta-galactoside sugar lactose. Mutants from cells containing the lac genes on an F factor were selected by the ability to grow on succinate in the presence of the toxic galactoside beta-thio-o-nitrophenylgalactoside. Mutants that grew on melibiose minimal plates but failed to grow on lactose minimal plates were picked. In sugar transport assays, mutant cells showed the striking result of having low levels of lactose downhill transport but high levels of melibiose downhill transport. Accumulation (uphill) of melibiose was completely defective in all of the mutants. Kinetic analysis of melibiose transport in the mutants showed either no change or a greater than normal apparent affinity for melibiose. PCR was used to amplify the lacY DNA of each mutant, which was then sequenced by the Sanger method. The following six mutations were found in the lacY structural genes of individual mutants: Tyr-26-->Asp, Phe-27-->Tyr, Phe-29-->Leu, Asp-240-->Val, Leu-321-->Gln, and His-322-->Tyr. We conclude from these experiments that Tyr-26, Phe-27, Phe-29 (helix 1), Asp-240 (helix 7), Leu-321, and His-322 (helix 10) either directly or indirectly mediate sugar recognition in the lactose carrier of E. coli.
本研究的目的是确定介导大肠杆菌乳糖载体中底物识别的氨基酸残基。乳糖载体可转运α-半乳糖苷糖蜜二糖以及β-半乳糖苷糖乳糖。通过在有毒的半乳糖苷β-硫代-邻硝基苯半乳糖苷存在下在琥珀酸盐上生长的能力,从含有F因子上的lac基因的细胞中筛选突变体。挑选出在蜜二糖基本平板上生长但在乳糖基本平板上不能生长的突变体。在糖转运测定中,突变体细胞显示出惊人的结果,即乳糖下坡转运水平低但蜜二糖下坡转运水平高。所有突变体中蜜二糖的积累(上坡)均完全缺陷。对突变体中蜜二糖转运的动力学分析表明,对蜜二糖的表观亲和力要么没有变化,要么高于正常水平。使用PCR扩增每个突变体的lacY DNA,然后通过桑格法进行测序。在各个突变体的lacY结构基因中发现了以下六个突变:Tyr-26→Asp、Phe-27→Tyr、Phe-29→Leu、Asp-240→Val、Leu-321→Gln和His-322→Tyr。我们从这些实验中得出结论,Tyr-26、Phe-27、Phe-29(螺旋1)、Asp-240(螺旋7)、Leu-321和His-322(螺旋10)直接或间接介导大肠杆菌乳糖载体中的糖识别。