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Identification of a genetic element (psr) which negatively controls expression of Enterococcus hirae penicillin-binding protein 5.

机译:鉴定负调控平肠肠球菌青霉素结合蛋白5表达的遗传元件(psr)。

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摘要

Enterococcus hirae ATCC 9790 produces a penicillin-binding protein (PBP5) of low penicillin affinity which under certain conditions can take over the functions of all the other PBPs. The 7.1-kb EcoRI fragment containing the pbp5 gene of this strain and of two mutants, of which one (E. hirae R40) overproduces PBP5 and the other (E. hirae Rev14) does not produce PBP5, was cloned in pUC18 and sequenced. In the 7.1-kb EcoRI fragment cloned from strain ATCC 9790, an open reading frame (psr) potentially encoding a 19-kDa protein was identified 1 kb upstream of the pbp5 gene. An 87-bp deletion in this element was found in the 7.1-kb EcoRI fragment cloned from strains R40 and Rev14. In addition, several base substitutions were found in the pbp5 genes of strains R40 and Rev14. One of these converted the 42nd codon, TCA, to the stop codon, TAA, in the pbp5 gene of Rev14. Escherichia coli strains were transformed with plasmids carrying the 7.1-kb EcoRI insert or a 2.6-kb HincII insert containing only the pbp5 gene of the three strains. Immunoblotting analysis of proteins expressed by these transformants showed that the 87-bp deletion in psr was associated with the PBP5 overproducer phenotype of strain R40 and the conversion of the TCA codon to the stop codon was associated with the PBP5 nonproducer phenotype of strain Rev14. None of the other nucleotide substitutions had any apparent effect on the level of PBP5 synthesized.
机译:平肠肠球菌ATCC 9790产生的青霉素结合蛋白(PBP5)具有较低的青霉素亲和力,在某些条件下可以取代所有其他PBP的功能。将含有该菌株和两个突变体的pbp5基因的7.1-kb EcoRI片段克隆到pUC18中并测序,其中一个突变体(E. hirae R40)过量生产PBP5,另一个突变体(E. hirae Rev14)不生产PBP5。在从ATCC 9790株克隆的7.1-kb EcoRI片段中,在pbp5基因上游1 kb处发现了一个可能编码19-kDa蛋白的开放阅读框(psr)。在从菌株R40和Rev14克隆的7.1-kb EcoRI片段中发现了该元件的87-bp缺失。另外,在菌株R40和Rev14的pbp5基因中发现了几个碱基取代。其中之一将Rev14的pbp5基因中的第42个密码子TCA转换为终止密码子TAA。用携带仅包含三个菌株的pbp5基因的7.1-kb EcoRI插入片段或2.6-kb HincII插入片段的质粒转化大肠杆菌菌株。对这些转化子表达的蛋白质进行的免疫印迹分析表明,psr中的87 bp缺失与菌株R40的PBP5高生产者表型有关,而TCA密码子向终止密码子的转化与菌株Rev14的PBP5非生产者表型有关。其他核苷酸取代均未对合成的PBP5水平产生任何明显影响。

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