Brunder Werner, Schmidt Herbert, Frosch Matthias, Karch Helge
Microbiology (Reading). 1999 May;145 ( Pt 5):1005-1014. doi: 10.1099/13500872-145-5-1005.
Shiga-toxin-producing Escherichia coli (STEC) of different serotypes are known to harbour large plasmids. The aim of this study was to investigate, using the example of the plasmid-encoded serine protease EspP, whether these plasmids are a uniform genetic element present in STEC. Examination of 201 diarrhoeagenic E. coli strains using a newly developed espP-specific PCR showed that espP is specific for STEC and present in 57% of STEC belonging to 16 different serotypes. The espP genes of the 16 STEC serotypes varied to a certain extent, as shown by nucleotide sequence and restriction enzyme analyses, but the DNA regions adjacent to the espP gene were completely different. When two further STEC-plasmid markers, the catalase-peroxidase gene katP and the enterohaemorrhagic E. coli-haemolysin gene EHEC-hlyA were included, many combinations of the three markers were found, depending in part on the serotype. In addition, strains possessing none of the three markers still harboured large plasmids. In the most prevalent STEC serogroup, O157, it was observed that the plasmid of sorbitol-fermenting STEC O157:H- lacks the espP and katP genes although both genes are present in the plasmid of the non-sorbitol-fermenting STEC O157:H7. The EHEC-hlyA gene, however, is present in both. In conclusion, this study shows that the large plasmids of STEC are not uniform genetic elements but heterogeneous in both their gene composition and arrangement.
已知不同血清型的产志贺毒素大肠杆菌(STEC)携带大质粒。本研究的目的是以质粒编码的丝氨酸蛋白酶EspP为例,调查这些质粒是否是STEC中存在的统一遗传元件。使用新开发的espP特异性PCR对201株致泻性大肠杆菌菌株进行检测,结果表明espP对STEC具有特异性,并且存在于属于16种不同血清型的57%的STEC中。如核苷酸序列和限制性内切酶分析所示,16种STEC血清型的espP基因在一定程度上有所不同,但与espP基因相邻的DNA区域完全不同。当纳入另外两个STEC质粒标记物,即过氧化氢酶-过氧化物酶基因katP和肠出血性大肠杆菌溶血素基因EHEC-hlyA时,发现这三种标记物有多种组合,部分取决于血清型。此外,不具有这三种标记物的菌株仍携带大质粒。在最常见的STEC血清群O157中,观察到发酵山梨醇的STEC O157:H-的质粒缺乏espP和katP基因,尽管这两个基因都存在于不发酵山梨醇的STEC O157:H7的质粒中。然而,EHEC-hlyA基因在两者中都存在。总之,本研究表明,STEC的大质粒不是统一的遗传元件,而是在基因组成和排列上都是异质的。