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The helminth product, ES-62 modulates dendritic cell responses by inducing the selective autophagolysosomal degradation of TLR-transducers, as exemplified by PKCδ

机译:蠕虫产品ES-62通过诱导TLR传感器的选择性自噬吞噬体降解来调节树突状细胞反应,如PKCδ所示。

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摘要

We have previously shown that ES-62, a phosphorylcholine (PC)-containing glycoprotein secreted by the parasitic filarial nematode Acanthocheilonema viteae targets dendritic cell (DC) responses, speci cally by suppressing TLR4 signalling to inhibit Th1/Th17-driven in ammation. We have now investigated the molecular mechanisms underpinning such immunomodulation and show here that ES-62-mediated downregulation of protein kinase C-δ (PKC-δ), a TLR4-associated signalling mediator required for full activation of LPS-driven pro-in ammatory responses, is associated with induction of a low level of autophagic ux, as evidenced by upregulation and tra cking of p62 and LC3 and their consequent autophagolysosomal degradation. By contrast, the classical TLR4 ligand LPS, strongly upregulates p62 and LC3 expression but under such canonical TLR4 signalling this upregulation appears to re ect a block in autophagic ux, with these elements predominantly degraded in a proteasomal manner. These data are consistent with autophagic ux acting to homeostatically suppress proin ammatory DC responses and indeed, blocking of PKC-δ degradation by the autophagolysosomal inhibitors, E64d plus pepstatin A, results in abrogation of the ES-62-mediated suppression of LPS- driven release of IL-6, IL-12p70 and TNF-α by DCs. Thus, by harnessing this homeostatic regulatory mechanism, ES-62 can protect against aberrant in ammation, either to promote parasite survival or serendipitously, exhibit therapeutic potential in in ammatory disease.
机译:我们以前已经表明,ES-62是一种由寄生虫丝虫线虫棘棘茶蛋白分泌的含磷酸胆碱(PC)的糖蛋白,它靶向树突状细胞(DC)反应,具体是通过抑制TLR4信号传导来抑制Th1 / Th17驱动的氨基转移。现在,我们已经研究了支持这种免疫调节的分子机制,并在此处显示了ES-62介导的蛋白激酶C-δ(PKC-δ)的下调,这是TPS4关联的信号介质,可完全激活LPS驱动的促免疫反应。 p62和LC3的上调和转移以及随之而来的自噬酶体降解证明了这种应答与低水平自噬ux的诱导有关。相比之下,经典的TLR4配体LPS强烈上调p62和LC3的表达,但在这种典型的TLR4信号下,这种上调似乎反映了自噬ux的一个阻滞,这些元素主要以蛋白酶体方式降解。这些数据与自噬作用于体内稳态抑制蛋白原性直流反应有关,并且确实被自噬酶体抑制剂E64d加胃抑素A阻断PKC-δ降解,导致ES-62介导的LPS驱动释放的抑制作用被取消。 DCs检测IL-6,IL-12p70和TNF-α。因此,通过利用这种稳态调节机制,ES-62可以防止氨基转移异常,从而提高寄生虫的存活率或偶然发生,在急性疾病中显示出治疗潜力。

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