淋病奈瑟菌
微生物学
孔蛋白
补体系统
淋病
衰变加速因子
生物
系数H
抗体
免疫学
大肠杆菌
基因
细菌外膜
遗传学
人类免疫缺陷病毒(HIV)
作者
Serena Bettoni,Jutamas Shaughnessy,Karolina Maziarz,David Ermert,Sunita Gulati,Bo Zheng,Matthias Mörgelin,Susanne Jacobsson,Kristian Riesbeck,Magnus Unemo,Sanjay Ram,Anna M. Blom
出处
期刊:JCI insight
[American Society for Clinical Investigation]
日期:2019-12-05
卷期号:4 (23)
被引量:22
标识
DOI:10.1172/jci.insight.131886
摘要
Gonorrhea is a sexually transmitted infection with 87 million new cases per year globally. Increasing antibiotic resistance has severely limited treatment options. A mechanism that Neisseria gonorrhoeae uses to evade complement attack is binding of the complement inhibitor C4b-binding protein (C4BP). We screened 107 porin B1a (PorB1a) and 83 PorB1b clinical isolates randomly selected from a Swedish strain collection over the last 10 years and noted that 96/107 (89.7%) PorB1a and 16/83 (19.3%) PorB1b bound C4BP; C4BP binding substantially correlated with the ability to evade complement-dependent killing (r = 0.78). We designed 2 chimeric proteins that fused C4BP domains to the backbone of IgG or IgM (C4BP-IgG; C4BP-IgM) with the aim of enhancing complement activation and killing of gonococci. Both proteins bound gonococci (KD C4BP-IgM = 2.4 nM; KD C4BP-IgG 980.7 nM), but only hexameric C4BP-IgM efficiently outcompeted heptameric C4BP from the bacterial surface, resulting in enhanced complement deposition and bacterial killing. Furthermore, C4BP-IgM substantially attenuated the duration and burden of colonization of 2 C4BP-binding gonococcal isolates but not a non-C4BP-binding strain in a mouse vaginal colonization model using human factor H/C4BP-transgenic mice. Our preclinical data present C4BP-IgM as an adjunct to conventional antimicrobials for the treatment of gonorrhea.
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