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The Adaptor Protein SLP-76 Regulates HIV-1 Release and Cell-to-Cell Transmission in T Cells

机译:衔接蛋白SLP-76调节T细胞中HIV-1的释放和细胞间的传递

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HIV-1 infection in T cells is regulated by TCR activation. However, the cellular proteins of the TCR pathway that regulate HIV-1 infection are poorly characterized. In this study, in HIV-1 infection, we observed a significant reduction of HIV-1 virus production in Src homology 2 domain-containing leukocyte protein of 76 kDa (SLP-76)–deficient Jurkat T cells compared with wild-type and SLP-76–reconstituted Jurkat T cells. We further confirmed the role of SLP-76 in HIV-1 infection by small interfering RNA-mediated knockdown in MT4 cells and PBMCs. Structural-functional analysis revealed that the N-terminal domain of SLP-76 was important for regulating HIV-1 infection. Further mechanistic studies revealed that lack of SLP-76 impaired virus release, but did not affect viral entry, integration, and transcription. We also showed that SLP-76 plays a critical role in cell-to-cell transmission of HIV-1. Signaling studies revealed that SLP-76 associated with viral negative regulatory factor protein and multiple signaling molecules during HIV-1 infection. Furthermore, SLP-76 facilitated the association of negative regulatory factor and F-actin, suggesting that SLP-76 mediates the formation of a signaling complex that may regulate viral release via cytoskeletal changes. Taken together, our studies demonstrate a novel role for the adaptor molecule SLP-76 in regulating HIV-1 infection in T cells with the potential to develop innovative strategies against HIV-1.
机译:TCR激活可调节T细胞中的HIV-1感染。但是,TCR途径中调节HIV-1感染的细胞蛋白的特征很差。在这项研究中,在HIV-1感染中,我们观察到与野生型和SLP相比,含有Src同源2域的76 kDa(SLP-76)缺陷Jurkat T细胞白细胞蛋白中HIV-1病毒的产生显着减少-76重组Jurkat T细胞。我们通过MT4细胞和PBMC中的小干扰RNA介导的敲除进一步证实了SLP-76在HIV-1感染中的作用。结构功能分析表明,SLP-76的N端结构域对于调节HIV-1感染很重要。进一步的机理研究表明,缺乏SLP-76会削弱病毒的释放,但不会影响病毒的进入,整合和转录。我们还表明,SLP-76在HIV-1的细胞间传播中起关键作用。信号研究表明,SLP-76在HIV-1感染期间与病毒阴性调节因子蛋白和多种信号分子有关。此外,SLP-76促进了负调节因子和F-肌动蛋白的缔合,表明SLP-76介导了信号复合物的形成,该信号复合物可能通过细胞骨架的变化来调节病毒的释放。综上所述,我们的研究表明衔接子分子SLP-76在调节T细胞中HIV-1感染方面具有新型作用,并有可能开发针对HIV-1的创新策略。

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