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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >Unmethylated CpG motifs in the L. donovani DNA regulate TLR9-dependent delay of programmed cell death in macrophages
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Unmethylated CpG motifs in the L. donovani DNA regulate TLR9-dependent delay of programmed cell death in macrophages

机译:多诺氏乳杆菌DNA中未甲基化的CpG基序调节巨噬细胞中程序性细胞死亡的TLR9依赖性延迟

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Regulation of macrophage PCD plays an important role in pathogenesis of leishmaniasis. However, the precise involvement of any parasite molecule in this process remains uncertain. In the current study, in silico wide analysis demonstrated that genes in the Leishmania donovani genome are highly enriched for CpG motifs, with sequence frequency of 8.7%. Here, we show that unmethylated species-specific CpG motifs in LdDNA significantly (P=0.01) delay macrophage PCD by endosomal interaction with TLR9 via the adaptor protein MyD88. Importantly, LdDNA triggered high levels of luciferase activity (P=0.001) under NF-kappa B-dependent transcription in HEK-TLR9 cells. Furthermore, the activation of caspases in macrophages was inhibited (P=0.001) in the presence of LdDNA. Notably, the delay of PCD was mediated by modulation of the antiapoptotic proteins, Mcl-1 and Bfl-1, and impairment of loss of Delta psi m in macrophages through the neutralization of oxidative and nitrosative stress. The inhibition of caspase activation and up-regulation of Mcl-1 by LdDNA were TLR9 dependent. Analysis of the targets of LdDNA identified an early activation of the TLR9-dependent PI3K/Akt and SFK pathways, which were required for the observation of the antiapoptotic effects in macrophages. Moreover, we demonstrate that LdDNA modulates the TLR9-I kappa B-alpha pathway by promoting the tyrosine phosphorylation of TLR9 and the TLR9-mediated recruitment of Syk kinase. The results have identified a novel, TLR9-dependent antiapo ptotic function of LdDNA, which will provide new opportunities for discovering and evaluating molecular targets for drug and vaccine designing against VL.
机译:巨噬细胞PCD的调节在利什曼病的发病机理中起重要作用。但是,任何寄生虫分子在此过程中的确切参与仍不确定。在当前的研究中,计算机模拟分析表明,利什曼原虫donovani基因组中的基因高度富含CpG基序,序列频率为8.7%。在这里,我们显示LdDNA中未甲基化的物种特异性CpG图案通过连接蛋白MyD88与TLR9的内体相互作用显着(P = 0.01)延迟巨噬细胞PCD。重要的是,在HEK-TLR9细胞中,NF-κB依赖性转录下,LdDNA触发了高水平的荧光素酶活性(P = 0.001)。此外,在LdDNA存在下,巨噬细胞中胱天蛋白酶的活化被抑制(P = 0.001)。值得注意的是,PCD的延迟是由抗凋亡蛋白Mcl-1和Bfl-1的调节介导的,以及通过中和氧化应激和亚硝化应激,损害了巨噬细胞中Δpsim的损失。 LdDNA对caspase激活的抑制和Mcl-1的上调是TLR9依赖性的。对LdDNA靶标的分析确定了TLR9依赖的PI3K / Akt和SFK途径的早期激活,这是观察巨噬细胞抗凋亡作用所必需的。此外,我们证明LdDNA通过促进TLR9的酪氨酸磷酸化和TLR9介导的Syk激酶的募集来调节TLR9-IκB-α途径。研究结果确定了一种新颖的LdDNA依赖TLR9的抗载脂蛋白功能,这将为发现和评估针对VL的药物和疫苗设计的分子靶标提供新的机会。

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