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大肠杆菌K-12甘露醇通透酶的缺失突变体:转运磷酸化、磷酸交换和甘露醇结合活性的剖析

Deletion mutants of the Escherichia coli K-12 mannitol permease: dissection of transport-phosphorylation, phospho-exchange, and mannitol-binding activities.

作者信息

Grisafi P L, Scholle A, Sugiyama J, Briggs C, Jacobson G R, Lengeler J W

机构信息

Fachbereich Biologie/Chemie, Universität Osnabrück, Federal Republic of Germany.

出版信息

J Bacteriol. 1989 May;171(5):2719-27. doi: 10.1128/jb.171.5.2719-2727.1989.

Abstract

We have constructed a series of deletion mutations of the cloned Escherichia coli K-12 mtlA gene, which encodes the mannitol-specific enzyme II of the phosphoenolpyruvate (PEP)-dependent carbohydrate phosphotransferase system. This membrane-bound permease consists of 637 amino acid residues and is responsible for the concomitant transport and phosphorylation of D-mannitol in E. coli. Deletions into the 3' end of mtlA were constructed by exonuclease III digestion. Restriction mapping of the resultant plasmids identified several classes of deletions that lacked approximately 5% to more than 75% of the gene. Immunoblotting experiments revealed that many of these plasmids expressed proteins within the size range predicted by the restriction analyses, and all of these proteins were membrane localized, which demonstrated that none of the C-terminal half of the permease is required for membrane insertion. Functional analyses of the deletion proteins, expressed in an E. coli strain deleted for the chromosomal copy of mtlA, showed that all but one of the strains containing confirmed deletions were inactive in transport and PEP-dependent phosphorylation of mannitol, but deletions removing up to at least 117 amino acid residues from the C terminus of the permease were still active in catalyzing phospho exchange between mannitol 1-phosphate and mannitol. A deletion protein that lacked 240 residues from the C terminus of the permease was inactive in phospho exchange but still bound mannitol with high affinity. These experiments localize sites important for transport and PEP-dependent phosphorylation to the extreme C terminus of the mannitol permease, sites important for phospho exchange to between residues 377 and 519, and sites necessary for mannitol binding to the N-terminal 60% of the molecule. The results are discussed with respect to the fact that the mannitol permease consists of structurally independent N- and C-terminal domains.

摘要

我们构建了一系列克隆的大肠杆菌K-12 mtlA基因的缺失突变体,该基因编码磷酸烯醇丙酮酸(PEP)依赖性碳水化合物磷酸转移酶系统的甘露醇特异性酶II。这种膜结合通透酶由637个氨基酸残基组成,负责大肠杆菌中D-甘露醇的伴随转运和磷酸化。通过核酸外切酶III消化构建mtlA 3'端的缺失。对所得质粒的限制性图谱分析确定了几类缺失,这些缺失缺失了该基因约5%至超过75%的部分。免疫印迹实验表明,这些质粒中的许多表达了限制性分析预测大小范围内的蛋白质,并且所有这些蛋白质都定位于膜上,这表明通透酶的C端一半对于膜插入不是必需的。在缺失染色体拷贝的mtlA的大肠杆菌菌株中表达的缺失蛋白的功能分析表明,除了一个含有已确认缺失的菌株外,所有菌株在甘露醇的转运和PEP依赖性磷酸化方面均无活性,但从通透酶C端去除多达至少117个氨基酸残基的缺失在催化1-磷酸甘露醇和甘露醇之间的磷酸交换方面仍然具有活性。一种从通透酶C端缺失240个残基的缺失蛋白在磷酸交换方面无活性,但仍以高亲和力结合甘露醇。这些实验将对转运和PEP依赖性磷酸化重要的位点定位到甘露醇通透酶的极端C端,将对磷酸交换重要的位点定位到残基377和519之间,将甘露醇结合所需的位点定位到分子的N端60%。结合甘露醇通透酶由结构上独立的N端和C端结构域组成这一事实对结果进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f266/209956/b8dcb4f90dd4/jbacter00171-0473-a.jpg

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