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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Differential activation of human TLR4 by Escherichia coli and Shigella flexneri 2a lipopolysaccharide: combined effects of lipid A acylation state and TLR4 polymorphisms on signaling.
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Differential activation of human TLR4 by Escherichia coli and Shigella flexneri 2a lipopolysaccharide: combined effects of lipid A acylation state and TLR4 polymorphisms on signaling.

机译:大肠杆菌和弗氏志贺氏菌2a脂多糖对人TLR4的差异激活:脂质A酰化状态和TLR4多态性对信号传导的综合影响。

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摘要

The lipid A of LPS activates TLR4 through an interaction with myeloid differentiation protein-2 (MD-2) and the degree of lipid A acylation affects TLR4 responsiveness. Two TLR4 single nucleotide polymorphisms (Asp299Gly and Thr399Ile) have been associated with LPS hyporesponsiveness. We hypothesized that the combination of hypoacylation and these single nucleotide polymorphisms would exhibit a compounded effect on TLR4 signaling. HEK293T transfectants expressing wild-type or polymorphic TLR4 were stimulated with Escherichia coli (predominantly hexaacylated lipid A) or Shigella flexneri 2a (a mixture of hexaacylated, pentaacylated, and predominantly tetraacylated lipid A) LPS, or hexaacylated vs pentaacylated synthetic lipid As. NF-kappaB-reporter activity was significantly lower in response to S. flexneri 2a than E. coli LPS and further decreased in polymorphic transfectants. Neither hexaacylated nor pentaacylated synthetic lipid A induced NF-kappaB activity in wild-type transfectants under the identical transfection conditions used for LPS; however, increasing human MD-2 expression rescued responsiveness to hexaacylated lipid A only, while murine MD-2 was required to elicit a response to pentaacylated lipid A. Adherent PBMC of healthy volunteers were also compared for LPS-induced TNF-alpha, IL-6, IL-1beta, and IL-10 production. Cytokine levels were significantly lower (approximately 20-90%) in response to S. flexneri than to E. coli LPS/lipid A and PBMC from polymorphic individuals secreted decreased cytokine levels in response to both LPS types and failed to respond to pentaacylated lipid A. Thus, the combination of acylation state and host genetics may significantly impact vaccine immunogenicity and/or efficacy, whether LPS is an integral component of a whole organism vaccine or included as an adjuvant.
机译:LPS的脂质A通过与髓样分化蛋白2(MD-2)相互作用来激活TLR4,脂质A的酰化程度影响TLR4的响应性。两种TLR4单核苷酸多态性(Asp299Gly和Thr399Ile)已与LPS低反应性相关。我们假设低酰化和这些单核苷酸多态性的组合将显示对TLR4信号的复合作用。用大肠杆菌(主要是六酰基化脂质A)或弗氏志贺氏菌2a(六酰基化,五酰基化和主要四酰基化脂质A的混合物)LPS或六酰基化与五酰基化的合成脂质As刺激表达野生型或多态性TLR4的HEK293T转染子。对弗氏链球菌2a的响应,NF-kappaB的报告活性明显低于大肠杆菌LPS,在多态性转染子中进一步降低。在与LPS相同的转染条件下,六酰基化或五酰基化的合成脂质A均未在野生型转染子中诱导NF-κB活性。然而,增加人类MD-2的表达只能挽救对六酰化脂质A的响应,而需要鼠MD-2才能引起对五酰化脂质A的响应。还比较了健康志愿者的粘附PBMC与LPS诱导的TNF-α,IL- 6,IL-1beta和IL-10的产生。对弗氏链球菌的应答比对大肠杆菌LPS /脂质A和PBMC的细胞因子水平显着降低(约20-90%),多态性个体的PBMC分泌了对两种LPS类型均应答且对五酰化脂质A无效的细胞因子水平降低因此,酰化状态和宿主遗传学的结合可显着影响疫苗的免疫原性和/或功效,无论LPS是全生物疫苗的组成部分还是作为佐剂包括在内。

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