首页> 美国卫生研究院文献>Journal of Bacteriology >Biosynthesis of D-alanyl-lipoteichoic acid: cloning nucleotide sequence and expression of the Lactobacillus casei gene for the D-alanine-activating enzyme.
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Biosynthesis of D-alanyl-lipoteichoic acid: cloning nucleotide sequence and expression of the Lactobacillus casei gene for the D-alanine-activating enzyme.

机译:D-丙氨酸脂酸的生物合成:D-丙氨酸激活酶的干酪乳杆菌基因的克隆核苷酸序列和表达。

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摘要

The D-alanine-activating enzyme (Dae; EC 6.3.2.4) encoded by the dae gene from Lactobacillus casei ATCC 7469 is a cytosolic protein essential for the formation of the D-alanyl esters of membrane-bound lipoteichoic acid. The gene has been cloned, sequenced, and expressed in Escherichia coli, an organism which does not possess Dae activity. The open reading frame is 1,518 nucleotides and codes for a protein of 55.867 kDa, a value in agreement with the 56 kDa obtained by electrophoresis. A putative promoter and ribosome-binding site immediately precede the dae gene. A second open reading frame contiguous with the dae gene has also been partially sequenced. The organization of these genetic elements suggests that more than one enzyme necessary for the biosynthesis of D-alanyl-lipoteichoic acid may be present in this operon. Analysis of the amino acid sequence deduced from the dae gene identified three regions with significant homology to proteins in the following groups of ATP-utilizing enzymes: (i) the acid-thiol ligases, (ii) the activating enzymes for the biosynthesis of enterobactin, and (iii) the synthetases for tyrocidine, gramicidin S, and penicillin. From these comparisons, a common motif (GXXGXPK) has been identified that is conserved in the 19 protein domains analyzed. This motif may represent the phosphate-binding loop of an ATP-binding site for this class of enzymes. A DNA fragment (1,568 nucleotides) containing the dae gene and its putative ribosome-binding site has been subcloned and expressed in E. coli. Approximately 0.5% of the total cell protein is active Dae, whereas 21% is in the form of inclusion bodies. The isolation of this minimal fragment without a native promoter sequence provides the basis for designing a genetic system for modulating the D-alanine ester content of lipoteichoic acid.
机译:干酪乳杆菌ATCC 7469的dae基因编码的D-丙氨酸激活酶(Dae; EC 6.3.2.4)是胞膜蛋白,是形成膜结合脂蛋白壁酸的D-丙氨酸酯所必需的。该基因已在不具有Dae活性的生物体大肠杆菌中克隆,测序和表达。开放阅读框为1,518个核苷酸,编码55.867 kDa的蛋白质,该值与通过电泳获得的56 kDa一致。推定的启动子和核糖体结合位点紧接在dae基因之前。与dae基因相邻的第二个开放阅读框也已被部分测序。这些遗传元件的组织表明,该操纵子中可能存在一种以上的生物合成D-丙氨酰-硫辛酸必需的酶。通过对dae基因推导的氨基酸序列进行分析,确定了与以下三类ATP利用酶中的蛋白质具有显着同源性的三个区域:(i)酸性硫醇连接酶,(ii)用于肠杆菌素生物合成的激活酶, (iii)酪氨酸,短杆菌肽S和青霉素的合成酶。通过这些比较,已鉴定出在所分析的19个蛋白质结构域中保守的共同基序(GXXGXPK)。该基序可以代表该类酶的ATP结合位点的磷酸结合环。含有dae基因及其推定的核糖体结合位点的DNA片段(1568个核苷酸)已被亚克隆并在大肠杆菌中表达。总细胞蛋白中约有0.5%为活性Dae,而包涵体形式为21%。没有天然启动子序列的该最小片段的分离为设计用于调节脂磷壁酸的D-丙氨酸酯含量的遗传系统提供了基础。

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