Anderson J J, Oxender D L
J Bacteriol. 1977 Apr;130(1):384-92. doi: 10.1128/jb.130.1.384-392.1977.
Further evidence on the role of binding proteins in branched-chain amino acid transport in Escherichia coli was obtained by selecting mutants with altered expression of the binding proteins. The mutator phage Mu was used to induce E. coli L-valine-resistant mutants defective in branched-chain amino acid transport. By making use of mild selective conditions and strain backgrounds with derepressed high-affinity, binding protein-mediated transport systems, we were able to isolate a new class of transport mutants defective in these systems. Mutant strains AE84084 (livK::Mucts) and AE840102 (livJ) were found to be defective in leucine-specific and LIV binding proteins, respectively, by transport assay, in vitro binding activity, and by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Mutant strain AE4107 (livH::Mu), although lacking high-affinity, branched-chain amino acid transport, retained functional binding proteins and therefore evidently codes for an additional component of high-affinity transport. The livH, livJ, and livK mutations were mapped by transduction and shown to be closely linked to each other in the malT region (min 74) of the E. coli genetic map.
通过筛选结合蛋白表达改变的突变体,获得了关于结合蛋白在大肠杆菌支链氨基酸转运中作用的进一步证据。诱变噬菌体Mu被用于诱导在支链氨基酸转运方面存在缺陷的大肠杆菌L-缬氨酸抗性突变体。利用温和的选择条件以及高亲和力、结合蛋白介导的转运系统去阻遏的菌株背景,我们能够分离出一类在这些系统中存在缺陷的新型转运突变体。通过转运测定、体外结合活性以及十二烷基硫酸钠-聚丙烯酰胺凝胶电泳发现,突变菌株AE84084(livK::Mucts)和AE840102(livJ)分别在亮氨酸特异性结合蛋白和LIV结合蛋白方面存在缺陷。突变菌株AE4107(livH::Mu)虽然缺乏高亲和力的支链氨基酸转运能力,但保留了功能性结合蛋白,因此显然编码高亲和力转运的另一个组分。通过转导对livH、livJ和livK突变进行定位,结果表明它们在大肠杆菌遗传图谱的malT区域(74分钟处)彼此紧密连锁。