Byerly Caitlan D, Mitra Shubhajit, Patterson LaNisha L, Pittner Nicholas A, Velayutham Thangam S, Paessler Slobodan, Veljkovic Veljko, McBride Jere W
Department of Pathology, University of Texas Medical Branch, Galveston, Texas, United States of America.
Biomed Protection, LLC, Galveston, Texas, United States of America.
PLoS Pathog. 2022 May 16;18(5):e1010345. doi: 10.1371/journal.ppat.1010345. eCollection 2022 May.
Ehrlichia chaffeensis (E. chaffeensis) has evolved eukaryotic ligand mimicry to repurpose multiple cellular signaling pathways for immune evasion. In this investigation, we demonstrate that TRP120 has a novel repetitive short linear motif (SLiM) that activates the evolutionarily conserved Hedgehog (Hh) signaling pathway to inhibit apoptosis. In silico analysis revealed that TRP120 has sequence and functional similarity with Hh ligands and a candidate Hh ligand SLiM was identified. siRNA knockdown of Hh signaling and transcriptional components significantly reduced infection. Co-immunoprecipitation and surface plasmon resonance demonstrated that rTRP120-TR interacted directly with Hh receptor Patched-2 (PTCH2). E. chaffeensis infection resulted in early upregulation of Hh transcription factor GLI-1 and regulation of Hh target genes. Moreover, soluble recombinant TRP120 (rTRP120) activated Hh and induced gene expression consistent with the eukaryotic Hh ligand. The TRP120-Hh-SLiM (NPEVLIKD) induced nuclear translocation of GLI-1 in THP-1 cells and primary human monocytes and induced a rapid and expansive activation of Hh pathway target genes. Furthermore, Hh activation was blocked by an α-TRP120-Hh-SLiM antibody. TRP120-Hh-SLiM significantly increased levels of Hh target, anti-apoptotic protein B-cell lymphoma 2 (BCL-2), and siRNA knockdown of BCL-2 dramatically inhibited infection. Blocking Hh signaling with the inhibitor Vismodegib, induced a pro-apoptotic cellular program defined by decreased mitochondria membrane potential, significant reductions in BCL-2, activation of caspase 3 and 9, and increased apoptotic cells. This study reveals a novel E. chaffeensis SLiM ligand mimetic that activates Hh signaling to maintain E. chaffeensis infection by engaging a BCL-2 anti-apoptotic cellular program.
恰菲埃立克体(E. chaffeensis)通过真核配体模拟进化,重新利用多种细胞信号通路进行免疫逃避。在本研究中,我们证明TRP120具有一种新型重复短线性基序(SLiM),可激活进化保守的刺猬(Hh)信号通路以抑制细胞凋亡。计算机分析表明,TRP120与Hh配体具有序列和功能相似性,并鉴定出一个候选Hh配体SLiM。Hh信号和转录成分的siRNA敲低显著降低了感染。免疫共沉淀和表面等离子体共振表明,重组TRP120-TR与Hh受体Patched-2(PTCH2)直接相互作用。恰菲埃立克体感染导致Hh转录因子GLI-1早期上调以及Hh靶基因的调控。此外,可溶性重组TRP120(rTRP120)激活Hh并诱导与真核Hh配体一致的基因表达。TRP120-Hh-SLiM(NPEVLIKD)在THP-1细胞和原代人单核细胞中诱导GLI-1核转位,并诱导Hh通路靶基因的快速广泛激活。此外,α-TRP120-Hh-SLiM抗体可阻断Hh激活。TRP120-Hh-SLiM显著增加Hh靶标、抗凋亡蛋白B细胞淋巴瘤2(BCL-2)的水平,BCL-2的siRNA敲低显著抑制感染。用抑制剂维莫德吉阻断Hh信号,诱导了由线粒体膜电位降低、BCL-2显著减少、半胱天冬酶3和9激活以及凋亡细胞增加所定义的促凋亡细胞程序。这项研究揭示了一种新型的恰菲埃立克体SLiM配体模拟物,它通过参与BCL-2抗凋亡细胞程序激活Hh信号以维持恰菲埃立克体感染。