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Calling in the CaValry—Toxoplasma gondii Hijacks GABAergic Signaling and Voltage-Dependent Calcium Channel Signaling for Trojan horse-Mediated Dissemination

机译:呼叫骑兵毒素弓形虫劫持石榴石的发信号和电压依赖性钙通道信号,用于特洛伊木马介导的传播

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摘要

Dendritic cells (DCs) are regarded as the gatekeepers of the immune system but can also mediate systemic dissemination of the obligate intracellular parasite Toxoplasma gondii. Here, we review the current knowledge on how T. gondii hijacks the migratory machinery of DCs and microglia. Shortly after active invasion by the parasite, infected cells synthesize and secrete the neurotransmitter γ-aminobutyric acid (GABA) and activate GABA-A receptors, which sets on a hypermigratory phenotype in parasitized DCs in vitro and in vivo. The signaling molecule calcium plays a central role for this migratory activation as signal transduction following GABAergic activation is mediated via the L-type voltage-dependent calcium channel (L-VDCC) subtype Cav1.3. These studies have revealed that DCs possess a GABA/L-VDCC/Cav1.3 motogenic signaling axis that triggers migratory activation upon T. gondii infection. Moreover, GABAergic migration can cooperate with chemotactic responses. Additionally, the parasite-derived protein Tg14-3-3 has been associated with hypermigration of DCs and microglia. We discuss the interference of T. gondii infection with host cell signaling pathways that regulate migration. Altogether, T. gondii hijacks non-canonical signaling pathways in infected immune cells to modulate their migratory properties, and thereby promote its own dissemination.
机译:树突状细胞(DCS)被认为是免疫系统的守护者,但也可以介导迫使细胞内寄生虫毒素弓形虫的系统性传播。在这里,我们审查了目前关于Gondii如何劫持DCS和Microglia迁徙机械的知识。寄生虫活性侵袭后不久,感染细胞合成并分泌神经递质γ-氨基丁酸(GABA)并激活GABA-A受体,其在体外和体内寄生DC的高血管表型上。信号分子钙对该迁移激活起到该迁移激活的中心作用,因为在GabaeriC活化后通过L型电压依赖性钙通道(L-VDCC)亚型Cav1.3介导信号转导。这些研究表明,DCS具有GABA / L-VDCC / CAV1.3促进迁移迁移的迁移信号轴。此外,加巴能迁移可以与趋化反应合作。另外,寄生虫衍生的蛋白质TG14-3-3已经与DCS和小胶质细胞的高迁移有关。我们讨论了调节迁移的宿主细胞信号传导途径T.Gondii感染的干扰。完全,T.Gondii劫持感染的免疫细胞中的非规范信号通路,调节其迁移性质,从而促进其自身的传播。

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