首页> 外文期刊>European Journal of Immunology >Gain-of-function STAT1 mutations impair STAT3 activity in patients with chronic mucocutaneous candidiasis (CMC)
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Gain-of-function STAT1 mutations impair STAT3 activity in patients with chronic mucocutaneous candidiasis (CMC)

机译:功能损害STAT3 STAT1突变活动在慢性黏膜与皮肤的患者念珠菌病(CMC)

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摘要

Signal transducer and activator of transcription 3 (STAT3) triggered production of Th-17 cytokines mediates protective immunity against fungi. Mutations affecting the STAT3/interleukin 17 (IL-17) pathway cause selective susceptibility to fungal (Candida) infections, a hallmark of chronic mucocutaneous candidiasis (CMC). In patients with autosomal dominant CMC, we and others previously reported defective Th17 responses and underlying gain-of-function (GOF) STAT1 mutations, but how this affects STAT3 function leading to decreased IL-17 is unclear. We also assessed how GOF-STAT1 mutations affect STAT3 activation, DNA binding, gene expression, cytokine production, and epigenetic modifications. We excluded impaired STAT3 phosphorylation, nuclear translocation, and sequestration of STAT3 into STAT1/STAT3 heterodimers and confirm significantly reduced transcription of STAT3-inducible genes (RORC/IL-17/IL-22/IL-10/c-Fos/SOCS3/c-Myc) as likely underlying mechanism. STAT binding to the high affinity sis-inducible element was intact but binding to an endogenous STAT3 DNA target was impaired. Reduced STAT3-dependent gene transcription was reversed by inhibiting STAT1 activation with fludarabine or enhancing histone, but not STAT1 or STAT3 acetylation with histone deacetylase (HDAC) inhibitors trichostatin A or ITF2357. Silencing HDAC1, HDAC2, and HDAC3 indicated a role for HDAC1 and 2. Reduced STAT3-dependent gene transcription underlies low Th-17 responses in GOF-STAT1 CMC, which can be reversed by inhibiting acetylation, offering novel targets for future therapies.
机译:信号传感器和转录激活3(STAT3)触发th17细胞因子的生产对真菌介导保护性免疫力。突变影响STAT3 /白介素17(IL-17)途径导致选择性的易感性真菌(念珠菌)感染的一个特征慢性黏膜与皮肤的念珠菌病(CMC)。患者常染色体显性CMC,我们和别人之前报道Th17缺陷反应和潜在功能(GOF)STAT1突变,但这如何影响STAT3函数导致减少IL-17尚不清楚。我们也评估GOF-STAT1变异如何影响STAT3激活、DNA结合基因表达,细胞因子的生产和表观遗传修改。磷酸化、核易位封存的STAT3 STAT1 / STAT3并确认形成明显减少了STAT3-inducible基因的转录(RORC / IL-17 / il - 22生成/ il - 10 / c-Fos / SOCS3 /原癌基因)可能的潜在机制。高亲和力sis-inducible元素是完好无损但绑定到一个内生STAT3 DNA目标受损。转录被抑制STAT1逆转激活氟达拉滨和提高组蛋白,但不是STAT1和STAT3与组蛋白乙酰化作用脱乙酰酶(HDAC)抑制剂trichostatin或表明角色HDAC1和2。STAT3-dependent基因转录是低th17反应GOF-STAT1 CMC,可以逆转通过抑制乙酰化作用,提供为未来的治疗新靶点。

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