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首页> 外文期刊>MBio >Ehrlichia chaffeensis TRP120 Activates Canonical Notch Signaling To Downregulate TLR2/4 Expression and Promote Intracellular Survival
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Ehrlichia chaffeensis TRP120 Activates Canonical Notch Signaling To Downregulate TLR2/4 Expression and Promote Intracellular Survival

机译:<斜视> ehrlichia chaffeensis Trp120激活规范凹口信号通量,以下调TLR2 / 4表达,促进细胞内存力

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ABSTRACT Ehrlichia chaffeensis preferentially targets mononuclear phagocytes and survives through a strategy of subverting innate immune defenses, but the mechanisms are unknown. We have shown E.?chaffeensis type 1 secreted tandem repeat protein (TRP) effectors are involved in diverse molecular pathogen-host interactions, such as the TRP120 interaction with the Notch receptor-cleaving metalloprotease ADAM17. In the present study, we demonstrate E.?chaffeensis , via the TRP120 effector, activates the canonical Notch signaling pathway to promote intracellular survival. We found that nuclear translocation of the transcriptionally active Notch intracellular domain (NICD) occurs in response to E.?chaffeensis or recombinant TRP120, resulting in upregulation of Notch signaling pathway components and target genes notch1 , adam17 , hes , and hey . Significant differences in canonical Notch signaling gene expression levels (>40%) were observed during early and late stages of infection, indicating activation of the Notch pathway. We linked Notch pathway activation specifically to the TRP120 effector, which directly interacts with the Notch metalloprotease ADAM17. Using pharmacological inhibitors and small interfering RNAs (siRNAs) against γ-secretase enzyme, Notch transcription factor complex, Notch1, and ADAM17, we demonstrated that Notch signaling is required for ehrlichial survival. We studied the downstream effects and found that E.?chaffeensis TRP120-mediated activation of the Notch pathway causes inhibition of the extracellular signal-regulated kinase 1/2 (ERK1/2) and p38 mitogen-activated protein kinase (MAPK) pathways required for PU.1 and subsequent Toll-like receptor 2/4 (TLR2/4) expression. This investigation reveals a novel mechanism whereby E.?chaffeensis exploits the Notch pathway to evade the host innate immune response for intracellular survival. IMPORTANCE E.?chaffeensis is an obligately intracellular bacterium and the etiologic agent of human monocytotropic ehrlichiosis (HME), an emerging life-threatening tick-borne zoonosis. Mechanisms by which E.?chaffeensis establishes intracellular infection and avoids innate host defenses are not understood, but functionally relevant host-pathogen interactions with type 1 secreted TRP effectors are essential for the ehrlichial cellular reprogramming strategy. This study provides further insight into the molecular strategies used by obligately intracellular pathogens such as E.?chaffeensis , which have small genomes and a limited number of effector proteins and exploit evolutionarily conserved host cell programs such as Notch signaling to promote infection and intracellular survival.
机译:摘要Ehrlichia Chaffeensis优先靶向单核吞噬细胞,并通过映射先天免疫防御的策略来幸存,但机制是未知的。我们已经显示出E.?Chaffeensis型1分泌的串联重复蛋白(TRP)效应器参与不同的分子病原体 - 宿主相互作用,例如TRP120与凹口受体切割金属蛋白酶ADAM17的相互作用。在本研究中,我们通过TRP120效应器证明E.?Chaffeensis激活规范凹凸信号通路以促进细胞内存活。我们发现,响应于E.?Chaffeensis或重组TRP120,发生了转录活性凹口细胞内结构域(NICD)的核转位,导致Notch信号通路组分和靶基因Notch1,Adam17,HES和嘿,导致陷波信号通路组分和靶基因的上调。在感染的早期和晚期阶段期间观察到规范缺口信号传导基因表达水平(> 40%)的显着差异,表明陷波途径的活化。我们将Notch途径激活与TRP120效应器相关联,该否则直接与凹口金属蛋白酶ADAM17相互作用。使用药理学抑制剂和小干扰RNA(siRNA)对γ-分泌酶,Notch转录因子复合物,Notch1和AdaM17,我们证明了Ehrlichial存活所需的Notch信号传导。我们研究了下游效果,发现E.?Chaffeensis TRP120介导的凹口途径的活化导致抑制细胞外信号调节激酶1/2(ERK1 / 2)和P38丝裂原激活的蛋白激酶(MAPK)途径所需的抑制PU.1和随后的Toll样受体2/4(TLR2 / 4)表达。本研究揭示了一种新的机制,即E.?Chaffeensis利用凹口途径来逃避宿主的内在存活率。重要性E.?Chaffeensis是一种规范的细胞内细菌和人单核细胞分子ehrlliChiosis(HME)的病因试剂,是一种新兴的危及生命危及的蜱虫病。通过E.?Chaffeensis建立细胞内感染并避免先天宿主防御的机制,但不了解与1型分泌的TRP效应器的功能相关的宿主病原体相互作用对于Ehrlichial蜂窝重编程策略至关重要。该研究提供了进一步了解迫不尼止地细胞内病原体如E.?Chaffeensis使用的分子策略的洞察力,其具有小型基因组和有限数量的效应蛋白,并且利用进化的宿主细胞程序,例如Notch信号传导,以促进感染和细胞内存活。

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