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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >Epigenetically modulated LRRC33 acts as a negative physiological regulator for multiple Toll-like receptors
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Epigenetically modulated LRRC33 acts as a negative physiological regulator for multiple Toll-like receptors

机译:表观遗传调控的LRRC33充当多种Toll样受体的负性生理调节剂

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The members of a LRR family play crucial roles in the activation of innate and adaptive immune responses. We reported previously that LRRC33, a transmembrane protein of the LRR family, might potentially affect TLR-mediated activity. Here, we demonstrate that LRRC33 is a negative physiological regulator for multiple TLRs. Lrrc33-/- and Lrrc33+/- mice were more susceptible to TLR ligand challenges. The macrophages and DCs from Lrrc33-/- mice produced more proinflammatory cytokines than those of WT mice through increased activation of MAPK and NF-κB. Silencing LRRC33 also promoted multiple TLR-mediated activation in human moDCs. Notably, LRRC33 expression could be down-regulated by TLR ligands LPS, poly I:C, or PGN through H3K4me3 and H3K27me3 modification. In LPS-conditioned moDCs, reduced enrichment of H3K4me3 and increased H3K27me3 could be observed at the promoter region of LRRC33. Furthermore, silencing H3K4me3-associated factors MLL and RBBP5 not only decreased the enrichment of H3K4me3 but also down-regulated expression of LRRC33, whereas the expression of LRRC33 was up-regulated after silencing H3K27me3-associated factors EZH2 and EED. Thus, our results suggest that LRRC33 and TLRs may form a negative-feedback loop, which is important for the maintenance of immune homeostasis.
机译:LRR家族的成员在先天和适应性免疫应答的激活中起关键作用。我们以前曾报道过,LRRC33是LRR家族的跨膜蛋白,可能会影响TLR介导的活性。在这里,我们证明LRRC33是多个TLR的负面生理调节剂。 Lrrc33-/-和Lrrc33 +/-小鼠更容易受到TLR配体攻击。 Lrrc33-/-小鼠的巨噬细胞和DC通过增强MAPK和NF-κB的活化产生比WT小鼠更多的促炎细胞因子。沉默LRRC33还促进了人类moDC中多个TLR介导的激活。值得注意的是,通过H3K4me3和H3K27me3修饰,TLR配体LPS,poly I:C或PGN可能会下调LRRC33的表达。在LPS条件下的moDC中,可以在LRRC33的启动子区域观察到H3K4me3的富集减少和H3K27me3的增加。此外,沉默H3K4me3相关因子MLL和RBBP5不仅降低了H3K4me3的富集,而且下调了LRRC33的表达,而沉默了H3K27me3相关因子EZH2和EED后LRRC33的表达上调。因此,我们的结果表明LRRC33和TLRs可能形成负反馈回路,这对于维持免疫稳态至关重要。

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