Kresse A U, Beltrametti F, Müller A, Ebel F, Guzmán C A
Vaccine Research Group, Department of Microbial Pathogenesis and Vaccine Research, Division of Microbiology, GBF-National Research Centre for Biotechnology, D-38124 Braunschweig, Germany.
J Bacteriol. 2000 Nov;182(22):6490-8. doi: 10.1128/JB.182.22.6490-6498.2000.
The sepL gene is expressed in the locus of enterocyte effacement and therefore is most likely implicated in the attaching and effacing process, as are the products encoded by open reading frames located up- and downstream of this gene. In this study, the sepL gene of the enterohemorrhagic Escherichia coli (EHEC) strain EDL933 was analyzed and the corresponding polypeptide was characterized. We found that sepL is transcribed monocistronically and independently from the esp operon located downstream, which codes for the secreted proteins EspA, -D, and -B. Primer extension analysis allowed us to identify a single start of transcription 83 bp upstream of the sepL start codon. The analysis of the upstream regions led to the identification of canonical promoter sequences between positions -5 and -36. Translational fusions using lacZ as a reporter gene demonstrated that sepL is activated in the exponential growth phase by stimuli that are characteristic for the intestinal niche, e.g., a temperature of 37 degrees C, a nutrient-rich environment, high osmolarity, and the presence of Mn(2+). Protein localization studies showed that SepL was present in the cytoplasm and associated with the bacterial membrane fraction. To analyze the functional role of the SepL protein during infection of eukaryotic cells, an in-frame deletion mutant was generated. This sepL mutant was strongly impaired in its ability to attach to HeLa cells and induce a local accumulation of actin. These defects were partially restored by providing the sepL gene in trans. The EDL933DeltasepL mutant also exhibited an impaired secretion but not biosynthesis of Esp proteins, which was fully complemented by providing sepL in trans. These results demonstrate the crucial role played by SepL in the biological cycle of EHEC.
sepL基因在肠细胞损伤位点表达,因此很可能参与了黏附与损伤过程,该基因上下游开放阅读框所编码的产物亦是如此。在本研究中,对肠出血性大肠杆菌(EHEC)菌株EDL933的sepL基因进行了分析,并对相应的多肽进行了表征。我们发现sepL以单顺反子形式转录,且独立于下游的esp操纵子,后者编码分泌蛋白EspA、-D和-B。引物延伸分析使我们能够在sepL起始密码子上游83 bp处鉴定出一个单一的转录起始位点。对上游区域的分析导致在-5至-36位之间鉴定出典型的启动子序列。使用lacZ作为报告基因的翻译融合实验表明,sepL在指数生长期被肠道微环境特有的刺激所激活,例如37摄氏度的温度、营养丰富的环境、高渗透压以及Mn(2+)的存在。蛋白质定位研究表明,SepL存在于细胞质中,并与细菌膜部分相关。为了分析SepL蛋白在真核细胞感染过程中的功能作用,构建了一个框内缺失突变体。该sepL突变体在黏附HeLa细胞和诱导肌动蛋白局部积累的能力上严重受损。通过反式提供sepL基因,这些缺陷得到了部分恢复。EDL933DeltasepL突变体还表现出Esp蛋白分泌受损但生物合成未受损的情况,通过反式提供sepL可使其完全互补。这些结果证明了SepL在EHEC生物周期中所起的关键作用。