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nlpD基因位于大肠杆菌染色体上与rpoS组成的操纵子中,编码一种在细胞壁形成中具有潜在功能的新型脂蛋白。

The nlpD gene is located in an operon with rpoS on the Escherichia coli chromosome and encodes a novel lipoprotein with a potential function in cell wall formation.

作者信息

Lange R, Hengge-Aronis R

机构信息

Department of Biology, University of Konstanz, Germany.

出版信息

Mol Microbiol. 1994 Aug;13(4):733-43. doi: 10.1111/j.1365-2958.1994.tb00466.x.

Abstract

rpoS is the structural gene for sigma s, which is a second vegetative sigma subunit of RNA polymerase in Escherichia coli and is involved in the expression of many stationary phase-induced genes. Upstream of rpoS is an open reading frame (ORF) whose function and regulation have not been studied. Strong overproduction of its gene product using the IPTG-inducible tac promoter leads to the formation of bulges at the cell septum and the cell poles, and in rapidly growing cells brings about cell lysis, indicating that the gene product has a hydrolytic function in cell wall formation or maintenance. This is corroborated by sequence homology to lysostaphin, a cell wall lytic exoenzyme synthesized by two Staphylococcus strains. Using globomycin, a specific inhibitor of signal peptidase II, we demonstrate that the product of the ORF is a novel lipoprotein (NlpD). Two transcriptional start sites for nlpD have been localized. In contrast to rpoS, nlpD is not induced during entry into stationary phase. Growth-phase-regulated transcription of rpoS is initiated at additional sites within the nlpD ORF, but the nlpD promoters contribute substantially to the basal level of rpoS expression in exponentially growing cells, indicating that nlpD and rpoS form an operon.

摘要

rpoS是σS的结构基因,σS是大肠杆菌RNA聚合酶的第二个营养型σ亚基,参与许多稳定期诱导基因的表达。rpoS上游是一个开放阅读框(ORF),其功能和调控尚未得到研究。使用IPTG诱导型tac启动子强烈过量表达其基因产物会导致细胞隔膜和细胞两极形成凸起,并且在快速生长的细胞中会导致细胞裂解,这表明该基因产物在细胞壁形成或维持中具有水解功能。这一点通过与溶葡萄球菌素的序列同源性得到证实,溶葡萄球菌素是由两种葡萄球菌菌株合成的一种细胞壁裂解外切酶。使用信号肽酶II的特异性抑制剂球霉素,我们证明该ORF的产物是一种新型脂蛋白(NlpD)。已定位到nlpD的两个转录起始位点。与rpoS不同,nlpD在进入稳定期时不会被诱导。rpoS的生长阶段调控转录在nlpD ORF内的其他位点起始,但nlpD启动子对指数生长细胞中rpoS表达的基础水平有很大贡献,这表明nlpD和rpoS形成一个操纵子。

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