首页> 外文期刊>Journal of molecular microbiology and biotechnology: JMMB >The LysE superfamily: Topology of the lysine exporter LysE of Corynebacterium glutamicum, a paradyme for a novel superfamily of transmembrane solute translocators
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The LysE superfamily: Topology of the lysine exporter LysE of Corynebacterium glutamicum, a paradyme for a novel superfamily of transmembrane solute translocators

机译:LysE超家族:谷氨酸棒杆菌赖氨酸出口商LysE的拓扑结构,这是新型跨膜溶质转运蛋白超家族的一个代名词

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摘要

In Corynebacterium glutamicum the LysE carrier protein exhibits the unique function of exporting L-lysine. We here analyze the membrane topology of LysE, a protein of 236 amino acyl residues, using PhoA- and LacZ-fusions. The amino-terminal end of LysE is located in the cytoplasm whereas the carboxy-terminal end is found in the periplasm. Although 6 hydrophobic domains were identified based on hydropathy analyses, only five transmembrane spanning helices appear to be present. The additional hydrophobic segment may dip into the membrane or be surface localized. We show that LysE is a member of a family of proteins found, for example, in Escherichia coli, Bacillus subtilis, Mycobacterium tuberculosis and Helicobacter pylori. This family, which we have designated the LysE family, is distantly related to two additional protein families which we have designated the YahN and CadD families. These three families, the members of which exhibit similar sizes, hydropathy profiles, and sequence motifs comprise the LysE superfamily. Functionally characterized members of the LysE superfamily export L-lysine, cadmium and possibly quarternary amines. We suggest that LysE superfamily members will prove to catalyze export of a variety of biologically important solutes.
机译:在谷氨酸棒杆菌中,LysE载体蛋白表现出输出L-赖氨酸的独特功能。我们在这里使用PhoA和LacZ融合蛋白分析LysE的膜拓扑结构,该蛋白具有236个氨基酰基残基。 LysE的氨基末端位于细胞质中,而羧基末端位于周质中。尽管根据亲水性分析确定了6个疏水域,但似乎只出现了5个跨膜螺旋。附加的疏水链段可以浸入膜中或在表面定位。我们显示LysE是蛋白质家族的成员,例如在大肠杆菌,枯草芽孢杆菌,结核分枝杆菌和幽门螺杆菌中发现。这个家族,我们指定了LysE家族,与另外两个蛋白质家族(我们指定了YahN和CadD家族)有着密切的联系。这三个家族的成员显示出相似的大小,亲水性谱和序列基序,构成了LysE超家族。 LysE超家族的功能特征成员出口L-赖氨酸,镉和可能的季胺。我们建议LysE超家族成员将证明可催化多种生物学上重要的溶质的出口。

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