Gisch Nicolas, Peters Katharina, Thomsen Simone, Vollmer Waldemar, Schwudke Dominik, Denapaite Dalia
Glycobiology. 2021 Dec 30;31(12):1655-1669. doi: 10.1093/glycob/cwab079.
The opportunistic pathogen Streptococcus mitis possesses, like other members of the Mitis group of viridans streptococci, phosphorylcholine (P-Cho)-containing teichoic acids (TAs) in its cell wall. Bioinformatic analyses predicted the presence of TAs that are almost identical with those identified in the pathogen Streptococcus pneumoniae, but a detailed analysis of S. mitis lipoteichoic acid (LTA) was not performed to date. Here, we determined the structures of LTA from two S. mitis strains, the high-level beta-lactam and multiple antibiotic resistant strain B6 and the penicillin-sensitive strain NCTC10712. In agreement with bioinformatic predictions, we found that the structure of one LTA (type IV) was like pneumococcal LTA, except the exchange of a glucose moiety with a galactose within the repeating units. Further genome comparisons suggested that the majority of S. mitis strains should contain the same type IV LTA as S. pneumoniae, providing a more complete understanding of the biosynthesis of these P-Cho-containing TAs in members of the Mitis group of streptococci. Remarkably, we observed besides type IV LTA, an additional polymer belonging to LTA type I in both investigated S. mitis strains. This LTA consists of β-galactofuranosyl-(1,3)-diacylglycerol as glycolipid anchor and a poly-glycerol-phosphate chain at the O-6 position of the furanosidic galactose. Hence, these bacteria are capable of synthesizing two different LTA polymers, most likely produced by distinct biosynthesis pathways. Our bioinformatics analysis revealed the prevalence of the LTA synthase LtaS, most probably responsible for the second LTA version (type I), among S. mitis and Streptococcus pseudopneumoniae strains.
机会致病菌缓症链球菌,与草绿色链球菌米氏菌群的其他成员一样,其细胞壁中含有含磷酰胆碱(P-Cho)的磷壁酸(TAs)。生物信息学分析预测存在与致病菌肺炎链球菌中鉴定出的TAs几乎相同的TAs,但迄今为止尚未对缓症链球菌脂磷壁酸(LTA)进行详细分析。在此,我们确定了来自两株缓症链球菌的LTA结构,即高水平β-内酰胺和多重抗生素耐药菌株B6以及青霉素敏感菌株NCTC10712。与生物信息学预测一致,我们发现一种LTA(IV型)的结构与肺炎链球菌LTA相似,只是重复单元内的一个葡萄糖部分被半乳糖取代。进一步的基因组比较表明,大多数缓症链球菌菌株应含有与肺炎链球菌相同的IV型LTA,这为更全面地了解链球菌米氏菌群成员中这些含P-Cho的TAs的生物合成提供了依据。值得注意的是,除了IV型LTA外,我们在两株被研究的缓症链球菌菌株中均观察到另一种属于I型LTA的聚合物。这种LTA由β-呋喃半乳糖基-(1,3)-二酰甘油作为糖脂锚和呋喃半乳糖O-6位的聚甘油磷酸链组成。因此,这些细菌能够合成两种不同的LTA聚合物,很可能由不同的生物合成途径产生。我们的生物信息学分析揭示了LTA合酶LtaS在缓症链球菌和假肺炎链球菌菌株中的普遍性,它很可能负责第二种LTA版本(I型)。