首页> 美国卫生研究院文献>PLoS Pathogens >Utilizing CMP-Sialic Acid Analogs to Unravel Neisseria gonorrhoeae Lipooligosaccharide-Mediated Complement Resistance and Design Novel Therapeutics
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Utilizing CMP-Sialic Acid Analogs to Unravel Neisseria gonorrhoeae Lipooligosaccharide-Mediated Complement Resistance and Design Novel Therapeutics

机译:利用CMP-唾液酸类似物解开淋病奈瑟氏球菌脂寡糖介导的补体抗性并设计新的疗法

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摘要

Neisseria gonorrhoeae deploys a novel immune evasion strategy wherein the lacto-N-neotetraose (LNnT) structure of lipooligosaccharide (LOS) is capped by the bacterial sialyltransferase, using host cytidine-5’-monophosphate (CMP)-activated forms of the nine-carbon nonulosonate (NulO) sugar N-acetyl-neuraminic acid (Neu5Ac), a sialic acid (Sia) abundant in humans. This allows evasion of complement-mediated killing by recruiting factor H (FH), an inhibitor of the alternative complement pathway, and by limiting classical pathway activation (“serum-resistance”). We utilized CMP salts of six additional natural or synthetic NulOs, Neu5Gc, Neu5Gc8Me, Neu5Ac9Ac, Neu5Ac9Az, legionaminic acid (Leg5Ac7Ac) and pseudaminic acid (Pse5Ac7Ac), to define structural requirements of Sia-mediated serum-resistance. While all NulOs except Pse5Ac7Ac were incorporated into the LNnT-LOS, only Neu5Gc incorporation yielded high-level serum-resistance and FH binding that was comparable to Neu5Ac, whereas Neu5Ac9Az and Leg5Ac7Ac incorporation left bacteria fully serum-sensitive and did not enhance FH binding. Neu5Ac9Ac and Neu5Gc8Me rendered bacteria resistant only to low serum concentrations. While serum-resistance mediated by Neu5Ac was associated with classical pathway inhibition (decreased IgG binding and C4 deposition), Leg5Ac7Ac and Neu5Ac9Az incorporation did not inhibit the classical pathway. Remarkably, CMP-Neu5Ac9Az and CMP-Leg5Ac7Ac each prevented serum-resistance despite a 100-fold molar excess of CMP-Neu5Ac in growth media. The concomitant presence of Leg5Ac7Ac and Neu5Ac on LOS resulted in uninhibited classical pathway activation. Surprisingly, despite near-maximal FH binding in this instance, the alternative pathway was not regulated and factor Bb remained associated with bacteria. Intravaginal administration of CMP-Leg5Ac7Ac to BALB/c mice infected with gonorrhea (including a multidrug-resistant isolate) reduced clearance times and infection burden. Bacteria recovered from CMP-Leg5Ac7Ac-treated mice were sensitive to human complement ex vivo, simulating in vitro findings. These data reveal critical roles for the Sia exocyclic side-chain in gonococcal serum-resistance. Such CMP-NulO analogs may provide a novel therapeutic strategy against the global threat of multidrug-resistant gonorrhea.
机译:淋病奈瑟氏球菌采用一种新的免疫逃避策略,其中脂联寡糖(LOS)的乳酸-N-新四糖(LNnT)结构被细菌唾液酸转移酶封端,使用的是胞嘧啶核苷5'-单磷酸(CMP)活化的九碳原子形式壬酸(NulO)糖N-乙酰神经氨酸(Neu5Ac),一种在人体内丰富的唾液酸(Sia)。这允许通过募集因子H(FH)(另一种补体途径的抑制剂)并通过限制经典途径激活(“抗血清”)来逃避补体介导的杀伤。我们利用了另外六种天然或合成NulOs,Neu5Gc,Neu5Gc8Me,Neu5Ac9Ac,Neu5Ac9Az,军团胺酸(Leg5Ac7Ac)和伪氨基酸(Pse5Ac7Ac)的CMP盐来定义Sia介导的血清抗性的结构要求。虽然除Pse5Ac7Ac外的所有NulOs均已掺入LNnT-LOS,但只有Neu5Gc掺入可产生与Neu5Ac相当的高水平的血清抗性和FH结合,而Neu5Ac9Az和Leg5Ac7Ac掺入则使细菌完全对血清敏感,并且不增强FH结合。 Neu5Ac9Ac和Neu5Gc8Me使细菌仅对低血清浓度具有抗性。虽然Neu5Ac介导的血清耐药性与经典途径抑制(降低的IgG结合和C4沉积)相关,但Leg5Ac7Ac和Neu5Ac9Az的掺入并没有抑制经典途径。值得注意的是,尽管CMP-Neu5Ac在生长培养基中摩尔过量100倍,但CMP-Neu5Ac9Az和CMP-Leg5Ac7Ac均阻止了血清抗性。 Leg5Ac7Ac和Neu5Ac在LOS上的同时存在导致不受抑制的经典途径激活。出人意料的是,尽管在这种情况下FH结合几乎达到最大,但替代途径却未受到调控,并且因子Bb仍与细菌相关。对淋病(包括耐多药分离株)感染的BALB / c小鼠进行CMP-Leg5Ac7Ac阴道内给药减少了清除时间和感染负担。从CMP-Leg5Ac7Ac处理的小鼠中回收的细菌对离体的人类补体敏感,从而模拟了体外发现。这些数据揭示了Sia环外侧链在淋球菌血清抗性中的关键作用。此类CMP-NulO类似物可提供针对新型耐药性淋病全球威胁的新颖治疗策略。

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