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X-Prolyl Dipeptidyl Aminopeptidase Gene (pepX) Is Part of the glnRA Operon in Lactobacillus rhamnosus

机译:X-脯氨酰二肽氨基肽酶基因(pepX)是鼠李糖乳杆菌中glnRA操纵子的一部分

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摘要

A peptidase gene expressing X-prolyl dipeptidyl aminopeptidase (PepX) activity was cloned from Lactobacillus rhamnosus 1/6 by using the chromogenic substrate l-glycyl-l-prolyl-β-naphthylamide for screening of a genomic library in Escherichia coli. The nucleotide sequence of a 3.5-kb HindIII fragment expressing the peptidase activity revealed one complete open reading frame (ORF) of 2,391 nucleotides. The 797-amino-acid protein encoded by this ORF was shown to be 40, 39, and 36% identical with PepXs from Lactobacillus helveticus, Lactobacillus delbrueckii, and Lactococcus lactis, respectively. By Northern analysis with a pepX-specific probe, transcripts of 4.5 and 7.0 kb were detected, indicating that pepX is part of a polycistronic operon in L. rhamnosus. Cloning and sequencing of the upstream region of pepX revealed the presence of two ORFs of 360 and 1,338 bp that were shown to be able to encode proteins with high homology to GlnR and GlnA proteins, respectively. By multiple primer extension analyses, the only functional promoter in the pepX region was located 25 nucleotides upstream of glnR. Northern analysis with glnA- and pepX-specific probes indicated that transcription from glnR promoter results in a 2.0-kb dicistronic glnR-glnA transcript and also in a longer read-through polycistronic transcript of 7.0 kb that was detected with both probes in samples from cells in exponential growth phase. The glnA gene was disrupted by a single-crossover recombinant event using a nonreplicative plasmid carrying an internal part of glnA. In the disruption mutant, glnRA-specific transcription was derepressed 10-fold compared to the wild type, but the 7.0-kb transcript was no longer detectable with either the glnA- or pepX-specific probe, demonstrating that pepX is indeed part of glnRA operon in L. rhamnosus. Reverse transcription-PCR analysis further supported this operon structure. An extended stem-loop structure was identified immediately upstream of pepX in the glnA-pepX intergenic region, a sequence that showed homology to a 23S-5S intergenic spacer and to several other L. rhamnosus-related entries in data banks.
机译:通过使用生色底物1-糖基-1-脯氨酰基-β-萘酰胺从大肠杆菌中克隆了表达X-脯氨酰二肽氨基肽酶(PepX)活性的肽酶基因,用于在大肠杆菌中筛选基因组文库。表达肽酶活性的3.5 kb HindIII片段的核苷酸序列揭示了一个完整的2391个核苷酸的开放阅读框(ORF)。该ORF编码的797个氨基酸蛋白与来自瑞士乳杆菌,德氏乳杆菌和乳酸乳球菌的PepX分别具有40、39和36%的同一性。通过用pepX特异性探针进行Northern分析,检测到4.5和7.0 kb的转录本,表明pepX是鼠李糖乳杆菌中多顺反子操纵子的一部分。 pepX上游区域的克隆和测序表明,存在两个360和1338 bp的ORF,它们分别能够编码与GlnR和GlnA蛋白高度同源的蛋白。通过多次引物延伸分析,pepX区中唯一的功能启动子位于glnR上游25个核苷酸处。用glnA和pepX特异性探针进行的Northern分析表明,从glnR启动子转录会产生2.0 kb的双顺反子glnR-glnA转录本,还会产生更长的7.0 kb的多顺反子转录本,这两种探针都可以在细胞样品中检测到处于指数增长阶段。使用携带glnA内部的非复制质粒,通过单交换重组事件破坏了glnA基因。在破坏突变体中,与野生型相比,glnRA特异性转录降低了10倍,但是7.0kb的转录物不再可用glnA或pepX特异性探针检测到,表明pepX确实是glnRA操纵子的一部分。在鼠李糖乳杆菌中。逆转录-PCR分析进一步支持了这种操纵子结构。在glnA-pepX基因间区域的pepX上游立即发现了延伸的茎环结构,该序列显示与23S-5S基因间隔子和数据库中鼠李糖乳杆菌相关条目的同源性。

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