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IFN-γ Acts Directly on Activated CD4+ T Cells during Mycobacterial Infection to Promote Apoptosis by Inducing Components of the Intracellular Apoptosis Machinery and by Inducing Extracellular Proapoptotic Signals

机译:IFN-γ在分枝杆菌感染过程中直接作用于活化的CD4 + T细胞通过诱导细胞内凋亡机制的成分和诱导细胞外凋亡信号来促进细胞凋亡。

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摘要

Despite many studies, the regulation of CD4+ T cell apoptosis during the shutdown of immune responses is not fully understood. We have investigated the molecular mechanisms of IFN-γ in regulating apoptosis of CD4+ T cells during bacillus Calmette-Guérin (BCG) infection of mice. Our data provide new insight into the regulation of CD4+ T cell apoptosis by IFN-γ. As CD4+ T cells responded to BCG infection, there was a coordinated increase in IFN-γ production by effector CD4+ T cells and a coordinated IFN-γ-dependent up-regulation of many diverse apoptosis-pathway genes in effector CD4+ T cells. Unexpectedly, IFN-γ up-regulated transcripts and protein expression of Bcl-2, Bax, Bim, Bid, Apaf-1, and caspase-9 in activated CD4+ T cells—components of the apoptosis machinery that are involved in promoting mitochondrial damage-mediated apoptosis. Wild-type, but not IFN-γ knockout, CD4+ T cells underwent apoptosis that was associated with damaged mitochondrial membranes. IFN-γ also up-regulated expression of cell-extrinsic signals of apoptosis, including TRAIL, DR5, and TNFR1. Cell-extrinsic apoptosis signals from TNF-α, TRAIL, and NO were capable of damaging the mitochondrial membranes in activated CD4+ T cells. Moreover, activated CD4+ T cells from BCG-infected DR5, TNFR1, and inducible NO synthase knockout mice had impaired caspase-9 activity, suggesting impaired mitochondria-pathway apoptosis. We propose that IFN-γ promotes apoptosis of CD4+ T cells during BCG infection as follows: 1) by sensitizing CD4+ T cells to apoptosis by inducing intracellular apoptosis molecules and 2) by inducing cell-extrinsic apoptosis signals that kill CD4+ effector T cells.
机译:尽管有许多研究,但尚未完全了解免疫应答关闭期间CD4 + T细胞凋亡的调控。我们研究了干扰素-γ调节卡介苗(BCG)感染小鼠期间CD4 + T细胞凋亡的分子机制。我们的数据为IFN-γ调控CD4 + T细胞凋亡提供了新的见解。由于CD4 + T细胞对BCG感染有反应,效应CD4 + T细胞的IFN-γ产生协同增加,而IFN-γ依赖性的up-协同增加。 CD4 + T细胞中多种凋亡通路基因的调控出乎意料的是,IFN-γ上调了活化的CD4 + T细胞中Bcl-2,Bax,Bim,Bid,Bid,Apaf-1和caspase-9的转录本和蛋白表达,这是细胞凋亡机制的组成部分与促进线粒体损伤介导的细胞凋亡有关。野生型但不是IFN-γ敲除的CD4 + T细胞经历了与线粒体膜受损有关的凋亡。 IFN-γ还上调了细胞凋亡的细胞外信号的表达,包括TRAIL,DR5和TNFR1。来自TNF-α,TRAIL和NO的细胞外凋亡信号能够破坏活化的CD4 + T细胞中的线粒体膜。此外,来自BCG感染的DR5,TNFR1和可诱导的NO合酶敲除小鼠的活化CD4 + T细胞具有受损的caspase-9活性,提示线粒体途径凋亡受到损害。我们认为,IFN-γ可促进BCG感染过程中CD4 + T细胞的凋亡,方法如下:1)通过诱导细胞内凋亡分子使CD4 + T细胞对细胞凋亡敏感,2 )诱导杀死CD4 + 效应T细胞的细胞外凋亡信号。

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