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Butyric Acid-Induced T-Cell Apoptosis Is Mediated by Caspase-8 and -9 Activation in a Fas-Independent Manner

机译:丁酸诱导的T细胞凋亡是由Caspase-8和-9激活以Fas独立的方式介导的。

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Our previous study demonstrated that butyric acid, an extracellular metabolite of periodontopathic bacteria, induced apoptosis in murine thymocytes, splenic T cells, and human Jurkat cells. In this study, we examined whether CD95 ligand-receptor interaction is involved in butyric acid-induced T-cell apoptosis. Flow cytometry analysis indicated that expression of Fas in Jurkat and T cells from peripheral blood mononuclear cells was not affected by butyric acid treatment. Furthermore, the expression of Fas and FasL protein in Western blotting was not affected by butyric acid treatment. Coincubation with blocking anti-Fas antibodies prevented Fas-induced apoptosis but not butyric acid-induced apoptosis. Anti-FasL antibodies also did not prevent butyric acid-induced apoptosis at any dose examined. Although cytotoxic anti-Fas antibody affected butyric acid-induced apoptosis, a synergistic effect was not seen. Time-dependent activation of caspase-8 and -9 was recognized in butyric acid- as well as Fas-mediated apoptosis. IETD-CHO and LEHD-CHO, specific inhibitors of caspase-8 and -9, respectively, completely blocked Fas-mediated apoptosis and partially prevented butyric acid-induced apoptosis. These results suggest that the Fas-FasL interaction is not involved in butyric acid-induced apoptosis and that caspase-8 and -9-dependent apoptosis plays an important role in butyric acid-induced apoptosis, as well as Fas-induced apoptosis.
机译:我们之前的研究表明,丁酸是牙周病细菌的一种细胞外代谢产物,可诱导鼠胸腺细胞,脾T细胞和人Jurkat细胞凋亡。在这项研究中,我们检查了CD95配体-受体相互作用是否与丁酸诱导的T细胞凋亡有关。流式细胞术分析表明,丁酸处理不影响外周血单核细胞在Jurkat和T细胞中Fas的表达。另外,丁酸处理不影响蛋白质印迹中Fas和FasL蛋白的表达。与封闭的抗Fas抗体共同孵育可阻止Fas诱导的凋亡,但不能阻止丁酸诱导的凋亡。在任何检查剂量下,抗FasL抗体均不能阻止丁酸诱导的细胞凋亡。尽管细胞毒性抗Fas抗体影响丁酸诱导的细胞凋亡,但未见协同作用。 caspase-8和-9的时间依赖性激活在丁酸以及Fas介导的细胞凋亡中得到公认。 IETD-CHO和LEHD-CHO分别是caspase-8和-9的特异性抑制剂,完全阻断Fas介导的凋亡,部分阻止丁酸诱导的凋亡。这些结果表明,Fas-FasL相互作用不参与丁酸诱导的凋亡,而caspase-8和-9依赖性凋亡在丁酸诱导的凋亡以及Fas诱导的凋亡中起重要作用。

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