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新型肺炎球菌荚膜型 33E 是由于疫苗型 33F 中的糖基转移酶 WciE 失活而产生的。

Novel pneumococcal capsule type 33E results from the inactivation of glycosyltransferase WciE in vaccine type 33F.

机构信息

Division of Pulmonary/Allergy/Critical Care, Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.

Department of Microbiology, University of Alabama at Birmingham, Birmingham, Alabama, USA.

出版信息

J Biol Chem. 2023 Sep;299(9):105085. doi: 10.1016/j.jbc.2023.105085. Epub 2023 Jul 24.

Abstract

The polysaccharide (PS) capsule is essential for immune evasion and virulence of Streptococcus pneumoniae. Existing pneumococcal vaccines are designed to elicit anticapsule antibodies; however, the effectiveness of these vaccines is being challenged by the emergence of new capsule types or variants. Herein, we characterize a newly discovered capsule type, 33E, that appears to have repeatedly emerged from vaccine type 33F via an inactivation mutation in the capsule glycosyltransferase gene, wciE. Structural analysis demonstrated that 33E and 33F share an identical repeat unit backbone [→5)-β-D-Galf2Ac-(1→3)-β-D-Galp-(1→3)-α-D-Galp-(1→3)-β-D-Galf-(1→3)-β-D-Glcp-(1→], except that a galactose (α-D-Galp) branch is present in 33F but not in 33E. Though the two capsule types were indistinguishable using conventional typing methods, the monoclonal antibody Hyp33FM1 selectively bound 33F but not 33E pneumococci. Further, we confirmed that wciE encodes a glycosyltransferase that catalyzes the addition of the branching α-D-Galp and that its inactivation in 33F strains results in the expression of the 33E capsule type. Though 33F and 33E share a structural and antigenic similarity, our pilot study suggested that immunization with a 23-valent pneumococcal PS vaccine containing 33F PS did not significantly elicit cross-opsonic antibodies to 33E. New conjugate vaccines that target capsule type 33F may not necessarily protect against 33E. Therefore, studies of new conjugate vaccines require knowledge of the newly identified capsule type 33E and reliable pneumococcal typing methods capable of distinguishing it from 33F.

摘要

荚膜多糖(PS)胶囊对于肺炎链球菌的免疫逃逸和毒力至关重要。现有的肺炎球菌疫苗旨在诱导抗荚膜抗体;然而,这些疫苗的有效性正受到新荚膜类型或变体的出现的挑战。在此,我们对一种新发现的荚膜类型 33E 进行了特征描述,该荚膜类型似乎是通过荚膜糖基转移酶基因 wciE 的失活突变从疫苗类型 33F 中反复出现的。结构分析表明,33E 和 33F 具有相同的重复单元骨架[→5)-β-D-Galf2Ac-(1→3)-β-D-Galp-(1→3)-α-D-Galp-(1→3)-β-D-Galf-(1→3)-β-D-Glcp-(1→],除了 33F 中存在一个半乳糖(α-D-Galp)支链,而 33E 中不存在。尽管这两种荚膜类型使用常规分型方法无法区分,但单克隆抗体 Hyp33FM1 选择性结合 33F 但不结合 33E 肺炎球菌。此外,我们证实 wciE 编码一种糖基转移酶,可催化分支的 α-D-Galp 的添加,并且其在 33F 菌株中的失活导致 33E 荚膜类型的表达。尽管 33F 和 33E 具有结构和抗原相似性,但我们的初步研究表明,用包含 33F PS 的 23 价肺炎球菌 PS 疫苗免疫不会显著诱导针对 33E 的交叉调理抗体。针对荚膜型 33F 的新型结合疫苗不一定能预防 33E。因此,新结合疫苗的研究需要了解新鉴定的荚膜型 33E 和能够将其与 33F 区分开的可靠肺炎球菌分型方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14dc/10462825/88e3c3b873c7/gr1.jpg

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