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大肠杆菌中亮氨酸转运系统一个组分的结构基因livH的克隆与特性分析

Cloning and characterization of livH, the structural gene encoding a component of the leucine transport system in Escherichia coli.

作者信息

Nazos P M, Antonucci T K, Landick R, Oxender D L

出版信息

J Bacteriol. 1986 May;166(2):565-73. doi: 10.1128/jb.166.2.565-573.1986.

Abstract

The physical location of the genetically defined livH gene was mapped in the 17-kilobase plasmid pOX1 by using transposon Tn5 inactivation mapping and further confirmed by subcloning and complementation analysis. These results indicated that the livH gene maps 3' to livK, the gene encoding the leucine-specific binding protein. Moreover, the nucleotide sequence of the livH gene and its flanking regions was determined. The livH gene is encoded starting 47 base pairs downstream from the livK gene, and it is transcribed in the same direction as the livK gene. The livK-livH intergenic region lacks promoter sequences and contains a GC-rich sequence that could lead to the formation of a stable stem loop structure. The coding sequence of the livH gene, which is 924 base pairs, specifies a very hydrophobic protein of 308 amino acid residues. Expression of livH-containing plasmids in minicells suggested that a poorly expressed protein with an Mr of 30,000 could be the livH gene product.

摘要

通过转座子Tn5失活定位法,在17千碱基的质粒pOX1中对基因定义的livH基因进行了物理定位,并通过亚克隆和互补分析进一步证实。这些结果表明,livH基因定位于livK基因的3'端,livK基因编码亮氨酸特异性结合蛋白。此外,还测定了livH基因及其侧翼区域的核苷酸序列。livH基因从livK基因下游47个碱基对处开始编码,其转录方向与livK基因相同。livK-livH基因间区域缺乏启动子序列,包含一个富含GC的序列,该序列可能导致形成稳定的茎环结构。livH基因的编码序列为924个碱基对,指定了一个由308个氨基酸残基组成的非常疏水的蛋白质。在小细胞中含livH质粒的表达表明,一种表达不佳、分子量为30000的蛋白质可能是livH基因产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/762f/214642/2f89f4a4f40a/jbacter00210-0219-a.jpg

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