首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Deregulation of Apoptotic Factors Bcl-xL and Bax Confers Apoptotic Resistance to Myeloid-derived Suppressor Cells and Contributes to Their Persistence in Cancer
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Deregulation of Apoptotic Factors Bcl-xL and Bax Confers Apoptotic Resistance to Myeloid-derived Suppressor Cells and Contributes to Their Persistence in Cancer

机译:凋亡因子Bcl-xL和Bax的放松调节赋予对髓样抑制细胞的凋亡抗性并有助于其在癌症中的持久性

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摘要

Myeloid-derived suppressor cells (MDSCs) are heterogeneous immature myeloid cells that accumulate in response to tumor progression. Compelling data from mouse models and human cancer patients showed that tumor-induced inflammatory mediators induce MDSC differentiation. However, the mechanisms underlying MDSC persistence is largely unknown. Here, we demonstrated that tumor-induced MDSCs exhibit significantly decreased spontaneous apoptosis as compared with myeloid cells with the same phenotypes from tumor-free mice. Consistent with the decreased apoptosis, cell surface Fas receptor decreased significantly in tumor-induced MDSCs. Screening for changes of key apoptosis mediators downstream the Fas receptor revealed that expression levels of IRF8 and Bax are diminished, whereas expression of Bcl-xL is increased in tumor-induced MDSCs. We further determined that IRF8 binds directly to Bax and Bcl-x promoter in primary myeloid cells in vivo, and IRF8-deficient MDSC-like cells also exhibit increased Bcl-xL and decreased Bax expression. Analysis of CD69 and CD25 levels revealed that cytotoxic T lymphocytes (CTLs) are partially activated in tumor-bearing hosts. Strikingly, FasL but not perforin and granzymes were selectively activated in CTLs in the tumor-bearing host. ABT-737 significantly increased the sensitivity of MDSCs to Fas-mediated apoptosis in vitro. More importantly, ABT-737 therapy increased MDSC spontaneous apoptosis and decreased MDSC accumulation in tumor-bearing mice. Our data thus determined that MDSCs use down-regulation of IRF8 to alter Bax and Bcl-xL expression to deregulate the Fas-mediated apoptosis pathway to evade elimination by host CTLs. Therefore, targeting Bcl-xL is potentially effective in suppression of MDSC persistence in cancer therapy.
机译:骨髓来源的抑制细胞(MDSC)是异质的未成熟骨髓细胞,可响应肿瘤的进展而积累。来自小鼠模型和人类癌症患者的令人信服的数据表明,肿瘤诱导的炎症介质可诱导MDSC分化。但是,MDSC持久性的基本机制尚不清楚。在这里,我们证明,与来自无肿瘤小鼠的相同表型的髓样细胞相比,肿瘤诱导的MDSCs自发凋亡明显降低。与减少的细胞凋亡一致,肿瘤诱导的MDSCs中的细胞表面Fas受体显着减少。筛选Fas受体下游关键凋亡介体的变化表明,在肿瘤诱导的MDSC中,IRF8和Bax的表达水平降低,而Bcl-xL的表达增加。我们进一步确定,IRF8体内直接结合到原代骨髓细胞中的Bax和Bcl-x启动子上,而IRF8缺陷的MDSC样细胞也表现出Bcl-xL增加和Bax表达降低。 CD69和CD25水平的分析表明,在荷瘤宿主中,细胞毒性T淋巴细胞(CTL)被部分激活。令人惊讶的是,在携带肿瘤的宿主中,Cas中选择性激活了FasL,但未穿孔蛋白和颗粒酶。 ABT-737在体外显着增加了MDSC对Fas介导的细胞凋亡的敏感性。更重要的是,ABT-737治疗增加了荷瘤小鼠的MDSC自发凋亡和MDSC积累。因此,我们的数据确定MDSC使用IRF8的下调来改变Bax和Bcl-xL的表达,从而放松Fas介导的凋亡途径,以逃避宿主CTL的消除。因此,靶向Bcl-xL在抑制癌症治疗中MDSC持久性方面可能有效。

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