Wu Kaifeng, Huang Jian, Zhang Yanqing, Xu Wenchun, Xu Hongmei, Wang Libin, Cao Ju, Zhang Xuemei, Yin Yibing
Key Laboratory of Diagnostic Medicine (Ministry of Education), College of Laboratory Medicine, Chongqing Medical University, Chongqing, China.
Key Laboratory of Diagnostic Medicine (Ministry of Education), College of Laboratory Medicine, Chongqing Medical University, Chongqing, China Department of Laboratory Medicine, The First Affiliated Hospital, Zunyi Medical College, Zunyi, China.
J Bacteriol. 2014 Sep;196(18):3324-34. doi: 10.1128/JB.01696-14. Epub 2014 Jul 7.
Teichoic acid (TA), together with peptidoglycan (PG), represents a highly complex glycopolymer that ensures cell wall integrity and has several crucial physiological activities. Through an insertion-deletion mutation strategy, we show that ΔrafX mutants are impaired in cell wall covalently attached TA (WTA)-PG biosynthesis, as evidenced by their abnormal banding patterns and reduced amounts of WTA in comparison with wild-type strains. Site-directed mutagenesis revealed an essential role for external loop 4 and some highly conserved amino acid residues in the function of RafX protein. The rafX gene was highly conserved in closely related streptococcal species, suggesting an important physiological function in the lifestyle of streptococci. Moreover, a strain D39 ΔrafX mutant was impaired in bacterial growth, autolysis, bacterial division, and morphology. We observed that a strain R6 ΔrafX mutant was reduced in adhesion relative to the wild-type R6 strain, which was supported by an inhibition assay and a reduced amount of CbpA protein on the ΔrafX mutant bacterial cell surface, as shown by flow cytometric analysis. Finally, ΔrafX mutants were significantly attenuated in virulence in a murine sepsis model. Together, these findings suggest that RafX contributes to the biosynthesis of WTA, which is essential for full pneumococcal virulence.
磷壁酸(TA)与肽聚糖(PG)一起,是一种高度复杂的糖聚合物,可确保细胞壁完整性并具有多种关键的生理活性。通过插入-缺失突变策略,我们发现ΔrafX突变体在细胞壁共价连接的TA(WTA)-PG生物合成中受损,与野生型菌株相比,其异常的条带模式和WTA含量减少证明了这一点。定点诱变揭示了外环4和一些高度保守的氨基酸残基在RafX蛋白功能中的重要作用。rafX基因在密切相关的链球菌物种中高度保守,表明其在链球菌生活方式中具有重要的生理功能。此外,D39 ΔrafX突变体菌株在细菌生长、自溶、细菌分裂和形态方面存在缺陷。我们观察到,相对于野生型R6菌株,R6 ΔrafX突变体菌株的黏附能力降低,这得到了抑制试验的支持,并且通过流式细胞术分析表明,ΔrafX突变体细菌细胞表面的CbpA蛋白量减少。最后,在小鼠败血症模型中,ΔrafX突变体的毒力显著减弱。总之,这些发现表明RafX有助于WTA的生物合成,而WTA对于肺炎球菌的完全毒力至关重要。