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奈瑟菌脂寡糖是补体成分C4b的作用靶点。内核磷酸乙醇胺残基决定C4b的连接特异性。

Neisserial lipooligosaccharide is a target for complement component C4b. Inner core phosphoethanolamine residues define C4b linkage specificity.

作者信息

Ram Sanjay, Cox Andrew D, Wright J Claire, Vogel Ulrich, Getzlaff Silke, Boden Ryan, Li Jianjun, Plested Joyce S, Meri Seppo, Gulati Sunita, Stein Daniel C, Richards James C, Moxon E Richard, Rice Peter A

机构信息

Section of Infectious Diseases, Evans Biomedical Research Center, Boston University Medical Center, Boston, Massachusetts 02118, USA.

出版信息

J Biol Chem. 2003 Dec 19;278(51):50853-62. doi: 10.1074/jbc.M308364200. Epub 2003 Oct 2.

DOI:10.1074/jbc.M308364200
PMID:14525973
Abstract

We identified Neisseria meningitidis lipooligosaccharide (LOS) as an acceptor for complement component C4b (C4b). Phosphoethanolamine (PEA) residues on the second heptose (HepII) residue in the LOS core structure formed amide linkages with C4b. PEA at the 6-position of HepII (6-PEA) was more efficient than 3-PEA in binding C4b. Strains bearing 6-PEA bound more C4b than strains with 3-PEA and were more susceptible to complement-mediated killing in serum bactericidal assays. Deleting 3-PEA from a strain that expressed both 3- and 6-PEA simultaneously on HepII did not decrease C4b binding. Glycose chain extension of the first heptose residue (HepI) influenced the nature of the C4b-LOS linkage. Predominantly ester C4b-LOS bonds were seen when lacto-N-neotetraose formed the terminus of the glycose chain extension of HepI with 3-PEA on HepII in the LOS core. Related LOS species with more truncated chain extensions from HepI bound C4b via amide linkages to 3-PEA on HepII. However, 6-PEA in the LOS core bound C4b even when the glycose chain from HepI bore lacto-N-neotetraose at the terminus. The C4A isoform exclusively formed amide linkages, whereas C4B bound meningococci preferentially via ester linkages. These data may serve to explain the preponderance of 3-PEA-bearing meningococci among clinical isolates, because 6-PEA enhances C4b binding that may facilitate clearance of 6-PEA-bearing strains resulting from enhanced serum killing by the classical pathway of complement.

摘要

我们鉴定出脑膜炎奈瑟菌脂寡糖(LOS)是补体成分C4b(C4b)的受体。LOS核心结构中第二个庚糖(HepII)残基上的磷酸乙醇胺(PEA)残基与C4b形成酰胺键。HepII 6位的PEA(6-PEA)在结合C4b方面比3-PEA更有效。带有6-PEA的菌株比带有3-PEA的菌株结合更多的C4b,并且在血清杀菌试验中对补体介导的杀伤更敏感。从在HepII上同时表达3-PEA和6-PEA的菌株中删除3-PEA不会降低C4b结合。第一个庚糖残基(HepI)的糖链延伸影响C4b-LOS连接的性质。当乳糖-N-新四糖形成HepI糖链延伸的末端,且LOS核心中HepII上带有3-PEA时,主要可见酯键连接的C4b-LOS。来自HepI的链延伸更短的相关LOS种类通过酰胺键与HepII上的3-PEA结合C4b。然而,即使HepI的糖链末端带有乳糖-N-新四糖,LOS核心中的6-PEA也能结合C4b。C4A同工型仅形成酰胺键,而C4B优先通过酯键结合脑膜炎球菌。这些数据可能有助于解释临床分离株中携带3-PEA的脑膜炎球菌占优势的原因,因为6-PEA增强了C4b结合,这可能有助于清除携带6-PEA的菌株,这是由于补体经典途径增强了血清杀伤作用。

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