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范可尼贫血C组(FA-C)细胞中I型干扰素诱导的Jak/STAT信号传导受损以及Fancc基因敲除小鼠中CD4+辅助性T细胞亚群异常。

Impaired type I IFN-induced Jak/STAT signaling in FA-C cells and abnormal CD4+ Th cell subsets in Fancc-/- mice.

作者信息

Fagerlie Sara R, Koretsky Tara, Torok-Storb Beverly, Bagby Grover C

机构信息

Oregon Health and Science University Cancer Institute, Portland, OR, USA.

出版信息

J Immunol. 2004 Sep 15;173(6):3863-70. doi: 10.4049/jimmunol.173.6.3863.

Abstract

The Fanconi anemia (FA) group C protein, FANCC, interacts with STAT1 following stimulation with IFN-gamma and is required for proper docking of STAT1 at the IFN-gamma receptor alpha-chain (IFN-gammaRalpha, IFN-gammaR1). Consequently, loss of a functional FANCC results in decreased activation of STAT1 following IFN-gamma stimulation. Because type I IFN receptors influence the function of type II receptors, and vice versa, we conducted experiments designed to determine whether type I IFN-induced activation of other STAT proteins is compromised in FA-C cells and found that activation of STAT 1, 3, and 5 is diminished in type I IFN-stimulated cells bearing Fancc-inactivating mutations. We also determined that the reduced activation of STATs was accompanied by significant reduction of type I IFN-induced tyrosine kinase 2 and Jak1 phosphorylation. Because tyrosine kinase 2 plays a role in differentiation of Th cells, we quantified cytokine secretion from CD4+ cells and in vitro generated CD4+ Th cell subsets from splenocytes of Fancc null mice to that of heterozygous mice and discovered reduced CD4+ IFN-gamma secretion in the Fancc-/- mouse, indicating impaired Th1 differentiation. We suggest that Fancc mutations result in a subtle immunological defect owing to the failure of FANCC to normally support Jak/STAT signaling.

摘要

范可尼贫血(FA)C组蛋白FANCC在受到γ干扰素刺激后与信号转导和转录激活因子1(STAT1)相互作用,并且是STAT1在γ干扰素受体α链(IFN-γRα,IFN-γR1)上正确对接所必需的。因此,功能性FANCC的缺失导致γ干扰素刺激后STAT1的激活减少。由于I型干扰素受体影响II型受体的功能,反之亦然,我们进行了实验以确定I型干扰素诱导的其他STAT蛋白激活在FA-C细胞中是否受损,并发现携带Fancc失活突变的I型干扰素刺激细胞中STAT 1、3和5的激活减少。我们还确定,STATs激活的降低伴随着I型干扰素诱导的酪氨酸激酶2和Jak1磷酸化的显著减少。由于酪氨酸激酶2在Th细胞分化中起作用,我们对来自Fancc基因敲除小鼠和杂合小鼠脾细胞的CD4+细胞的细胞因子分泌以及体外产生的CD4+Th细胞亚群进行了定量,发现Fancc-/-小鼠中CD4+γ干扰素分泌减少,表明Th1分化受损。我们认为,由于FANCC不能正常支持Jak/STAT信号传导,Fancc突变导致了一种微妙的免疫缺陷。

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