Geno K Aaron, Bush C Allen, Wang Mengnan, Jin Cheng, Nahm Moon H, Yang Jinghua
Department of Medicine, Division of Pulmonary, Allergy, and Critical Care Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
Department of Chemistry and Biochemistry, University of Maryland Baltimore County, Baltimore, Maryland, USA.
J Clin Microbiol. 2017 Sep;55(9):2775-2784. doi: 10.1128/JCM.00822-17. Epub 2017 Jun 28.
expresses capsular polysaccharides (CPSs) to protect itself from opsonophagocytic killing. The genes responsible for capsules synthesized by the Wzy-dependent mechanism, which accounts for 96 of the 98 known pneumococcal capsule types, are in a chromosomal region known as the locus. The nucleotide sequence in this region has been determined for all serotypes. In contrast, not all CPS structures have been defined. The structure of the serotype 35C polysaccharide was recently reported, but the presence of -acetyltransferase genes in the serotype 35C locus suggested that it could be incomplete, as the reported structure contains no O-acetylation. In addition, the genetic distinction of serotype 35C from the closely related serotype 42 was unclear, as their reported loci are nearly identical. To clarify these discrepancies, we obtained serotype 35C and 42 clinical and reference isolates and studied their serological and genetic properties, as well as the structures of CPSs purified from reference isolates. We demonstrated that the -acetyltransferase WciG was functional in serotype 35C but nonfunctional in serotype 42 due to a deletion in Serotype 35C was O-acetylated at the 5- and 6-positions of 3-β-galactofuranose, as well as the 2-position of 6-β-galactofuranose. However, serotype 42 has only O-acetylation at 3-β-galactofuranose, an observation consistent with its loss of WciG functionality, which is associated with O-acetylation at the 2-position and subsequent reaction with typing antiserum 35a. These findings provide a comprehensive view of the genetic, biochemical structural, and serological bases of serotypes 35C and 42.
表达荚膜多糖(CPSs)以保护自身免受调理吞噬杀伤。由Wzy依赖性机制合成荚膜的基因(已知的98种肺炎球菌荚膜类型中有96种是由该机制合成的)位于一个称为 位点的染色体区域。该区域的核苷酸序列已针对所有血清型确定。相比之下,并非所有CPS结构都已明确。最近报道了血清型35C多糖的结构,但血清型35C 位点中存在 - 乙酰转移酶基因表明其可能不完整,因为报道的结构中没有O - 乙酰化。此外,血清型35C与密切相关的血清型42的遗传差异尚不清楚,因为它们报道的 位点几乎相同。为了澄清这些差异,我们获得了血清型35C和42的临床及参考菌株,并研究了它们的血清学和遗传学特性,以及从参考菌株中纯化的CPSs的结构。我们证明,由于 在血清型35C中 - 乙酰转移酶WciG具有功能,但在血清型42中无功能。血清型35C在3 - β - 呋喃半乳糖的5位和6位以及6 - β - 呋喃半乳糖的2位发生O - 乙酰化。然而,血清型42仅在3 - β - 呋喃半乳糖有O - 乙酰化,这一观察结果与其WciG功能丧失一致,WciG功能丧失与2位的O - 乙酰化及随后与分型抗血清35a的反应有关。这些发现提供了血清型35C和42的遗传、生化结构及血清学基础的全面视图。