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Leishmania pifanoi Proteoglycolipid Complex P8 Induces Macrophage Cytokine Production through Toll-Like Receptor 4

机译:利什曼原虫pifanoi蛋白糖脂复合物P8通过Toll样受体4诱导巨噬细胞细胞因子的产生。

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The P8 proteoglycolipid complex (P8 PGLC) is a glyconjugate expressed by Leishmania mexicana complex parasites. We previously have shown that vaccination with P8 PGLC provides protection against cutaneous leishmaniasis in susceptible BALB/c mice. However, the biological importance of this complex remains unknown. Here we show that P8 PGLC localizes to the surface of Leishmania pifanoi amastigotes and that upon exposure to macrophages, P8 PGLC binds and induces inflammatory cytokine and chemokine mRNAs such as tumor necrosis factor alpha and RANTES early after stimulation. Our studies indicate that cytokine and chemokine induction is dependent upon Toll-like receptor 4 (TLR4). Interestingly, key inflammatory cytokines and chemokines (such as interleukin-6 [IL-6], macrophage inflammatory protein 1β, and beta interferon [IFN-β]) that can be induced through TLR4 activation were not induced or only slightly upregulated by P8 PGLC. Activation by P8 PGLC does not occur in the presence of TLR4 alone and requires both CD14 and myeloid differentiation protein 2 for signaling; this requirement may be responsible for the limited TLR4 response. This is the first characterization of a TLR4 ligand for Leishmania. In vitro experiments indicate that L. pifanoi amastigotes induce lower levels of cytokines in macrophages in the absence of TLR4; however, notably higher IL-10/IFN-γ ratios were found for TLR4-deficient mice than for BALB/c mice. Further, increased levels of parasites persist in BALB/c mice deficient in TLR4. Taken together, these results suggest that TLR4 recognition of Leishmania pifanoi amastigotes is important for the control of infection and that this is mediated, in part, through the P8 PGLC.
机译:P8蛋白糖脂复合物(P8 PGLC)是由 Leishmania mexicana 复合寄生虫表达的糖缀合物。我们以前已经证明,在易感的BALB / c小鼠中接种P8 PGLC疫苗可提供针对皮肤利什曼病的保护。但是,这种复合物的生物学重要性仍然未知。在这里,我们显示P8 PGLC定位于 Leishmania pifanoi amastigotes的表面,并且在暴露于巨噬细胞后,P8 PGLC会在刺激后早期结合并诱导炎性细胞因子和趋化因子mRNA,例如肿瘤坏死因子α和RANTES。我们的研究表明,细胞因子和趋化因子的诱导依赖于Toll样受体4(TLR4)。有趣的是,可通过TLR4激活诱导的关键炎性细胞因子和趋化因子(例如白介素6 [IL-6],巨噬细胞炎性蛋白1β和β干扰素[IFN-β])并未被诱导,或者仅被P8 PGLC稍微上调了。仅在TLR4的存在下,不会通过P8 PGLC激活,并且需要CD14和髓样分化蛋白2共同进行信号传导。此要求可能是有限的TLR4响应的原因。这是利什曼原虫的TLR4配体的首次表征。体外实验表明, L。在没有TLR4的情况下,pifanoi 变形虫诱导巨噬细胞中的细胞因子水平降低。然而,发现TLR4缺陷小鼠的IL-10 /IFN-γ比率明显高于BALB / c小鼠。此外,在TLR4缺陷的BALB / c小鼠中,寄生虫水平持续升高。综上所述,这些结果表明TLR4识别 Leishmania pifanoi amastigotes对于控制感染很重要,并且这部分是通过P8 PGLC介导的。

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