Research Service, Veterans Affairs Greater Los Angeles Healthcare System, Los Angeles, California, USA.
J Bacteriol. 2013 Nov;195(22):5092-101. doi: 10.1128/JB.00663-13. Epub 2013 Sep 6.
The spirochete Leptospira interrogans causes a systemic infection that provokes a febrile illness. The putative lipoproteins LigA and LigB promote adhesion of Leptospira to host proteins, interfere with coagulation, and capture complement regulators. In this study, we demonstrate that the expression level of the LigA and LigB proteins was substantially higher when L. interrogans proliferated at 37°C instead of the standard culture temperature of 30°C. The RNA comprising the 175-nucleotide 5' untranslated region (UTR) and first six lig codons, whose sequence is identical in ligA and ligB, is predicted to fold into two distinct stem-loop structures separated by a single-stranded region. The ribosome-binding site is partially sequestered in double-stranded RNA within the second structure. Toeprint analysis revealed that in vitro formation of a 30S-tRNA(fMet)-mRNA ternary complex was inhibited unless a 5' deletion mutation disrupted the second stem-loop structure. To determine whether the lig sequence could mediate temperature-regulated gene expression in vivo, the 5' UTR and the first six codons were inserted between the Escherichia coli l-arabinose promoter and bgaB (β-galactosidase from Bacillus stearothermophilus) to create a translational fusion. The lig fragment successfully conferred thermoregulation upon the β-galactosidase reporter in E. coli. The second stem-loop structure was sufficient to confer thermoregulation on the reporter, while sequences further upstream in the 5' UTR slightly diminished expression at each temperature tested. Finally, the expression level of β-galactosidase was significantly higher when point mutations predicted to disrupt base pairs in the second structure were introduced into the stem. Compensatory mutations that maintained base pairing of the stem without restoring the wild-type sequence reinstated the inhibitory effect of the 5' UTR on expression. These results indicate that ligA and ligB expression is limited by double-stranded RNA that occludes the ribosome-binding site. At elevated temperatures, the ribosome-binding site is exposed to promote translation initiation.
螺旋体属问号钩端螺旋体引起全身性感染,引起发热疾病。假定脂蛋白 LigA 和 LigB 促进钩端螺旋体与宿主蛋白的粘附,干扰凝血,并捕获补体调节剂。在这项研究中,我们证明当 L. interrogans 在 37°C 而不是标准培养温度 30°C 下增殖时,LigA 和 LigB 蛋白的表达水平显著更高。由包含 175 个核苷酸的 5'非翻译区 (UTR) 和前六个 lig 密码子组成的 RNA,其序列在 ligA 和 ligB 中是相同的,预计会折叠成两个不同的茎环结构,由单链区域隔开。核糖体结合位点在第二个结构中的双链 RNA 中部分被隔离。Toeprint 分析表明,除非 5'缺失突变破坏了第二个茎环结构,否则体外形成 30S-tRNA(fMet)-mRNA 三元复合物的过程会受到抑制。为了确定 lig 序列是否可以在体内介导温度调节基因表达,将 5'UTR 和前六个密码子插入大肠杆菌 l-阿拉伯糖启动子和 bgaB(嗜热脂肪芽孢杆菌的β-半乳糖苷酶)之间,以创建翻译融合物。lig 片段成功地在大肠杆菌中赋予了β-半乳糖苷酶报告基因的温度调节功能。第二个茎环结构足以赋予报告基因温度调节功能,而 5'UTR 中上游的序列在测试的每个温度下略微降低了表达水平。最后,当引入预测破坏第二个结构中碱基对的点突变时,β-半乳糖苷酶的表达水平显着升高。维持茎环碱基配对而不恢复野生型序列的补偿突变恢复了 5'UTR 对表达的抑制作用。这些结果表明,ligA 和 ligB 的表达受到封闭核糖体结合位点的双链 RNA 的限制。在较高温度下,核糖体结合位点暴露出来以促进翻译起始。