首页> 外文期刊>Infection and immunity >Enhanced Factor H Binding to Sialylated Gonococci Is Restricted to the Sialylated Lacto-N-Neotetraose Lipooligosaccharide Species: Implications for Serum Resistance and Evidence for a Bifunctional Lipooligosaccharide Sialyltransferase in Gonococci
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Enhanced Factor H Binding to Sialylated Gonococci Is Restricted to the Sialylated Lacto-N-Neotetraose Lipooligosaccharide Species: Implications for Serum Resistance and Evidence for a Bifunctional Lipooligosaccharide Sialyltransferase in Gonococci

机译:增强的因子H与唾液酸化的淋球菌的结合仅限于唾液酸化的N-新四糖Lipooligo糖种:血清抗药性和在Gonococci中双功能性低聚糖唾液酸转移酶的证据。

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We isolated serologically identical (by serovar determination and porin variable region [VR] typing) strains of Neisseria gonorrhoeae from an infected male and two of his monogamous female sex partners. One strain (termed 398078) expressed the L1 (Galα1 → 3Galβ1 → 4Glcβ1 → 4HepI) lipooligosaccharide (LOS) structure exclusively; the other (termed 398079) expressed the lacto-N-neotetraose (LNT; Galβ1 → 4GlcNAcβ1 → 3Galβ1 → 4Glcβ1 → 4HepI) LOS structure. The strain from the male index case expressed both glycoforms and exhibited both immunotypes. Nuclear magnetic resonance analysis revealed that sialic acid linked to the terminal Gal of L1 LOS via an α2 → 6 linkage and, as expected, to the terminal Gal of LNT LOS via an α2→ 3 linkage. Insertional inactivation of the sialyltransferase gene (known to sialylate LNT LOS) abrogated both L1 LOS sialylation and LNT LOS sialylation, suggesting a bifunctional nature of this enzyme in gonococci. Akin to our previous observations, sialylation of the LNT LOS of strain 398079 enhanced the binding of the complement regulatory molecule, factor H. Rather surprisingly, factor H did not bind to sialylated strain 398078. LOS sialylation conferred the LNT LOS-bearing strain complete (100%) resistance to killing by even 50% nonimmune normal human serum (NHS), whereas sialylation of L1 LOS conferred resistance only to 10% NHS. The ability of gonococcal sialylated LNT to bind factor H confers high-level serum resistance, which is not seen with sialylated L1 LOS. Thus, serum resistance mediated by sialylation of gonococcal L1 and LNT LOS occurs by different mechanisms, and specificity of factor H binding to sialylated gonococci is restricted to the LNT LOS species.
机译:我们从一名受感染的男性及其一夫一妻制的女性伴侣中分离出了血清学上相同的(通过血清学测定和孔蛋白可变区[VR]分型)淋病奈瑟菌菌株。一种菌株(称为398078)仅表达L1(加仑α1→3Galβ1→4Glcβ1→4HepI)脂寡糖(LOS)结构。另一个(称为398079)表达了乳糖- N -新四糖(LNT;Galβ1→4GlcNAcβ1→3Galβ1→4Glcβ1→4HepI)的LOS结构。来自男性索引病例的菌株表达两种糖型并且表现出两种免疫型。核磁共振分析表明,唾液酸通过α2→6键与L1 LOS的Gal末端相连,并且如预期的那样,通过α2→3键与LNT LOS的Gal末端相连。唾液酸转移酶基因的插入失活(已知唾液酸化LNT LOS)废除了L1 LOS唾液酸化和LNT LOS唾液酸化,表明该酶在淋球菌中具有双功能性质。类似于我们之前的观察,菌株398079的LNT LOS的唾液酸化增强了补体调节分子H因子的结合。相反,令人惊讶的是,因子H未结合唾液酸化的398078菌株.LOS唾液酸化使LNT LOS携带菌株完全( 100%的抗性甚至被50%非免疫正常人血清(NHS)杀死,而L1 LOS的唾液酸化仅使10%NHS具有抗性。淋球菌唾液酸化的LNT结合因子H的能力赋予高水平的血清抗药性,这在唾液酸化的L1 LOS中是看不到的。因此,由淋球菌L1和LNT LOS的唾液酸化介导的血清抗性通过不同的机制发生,并且与唾液酸化的球菌结合的H因子的特异性仅限于LNT LOS种。

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