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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Lipid microdomains are required sites for the selective endocytosis and nuclear translocation of IFN-gamma, its receptor chain IFN-gamma receptor-1, and the phosphorylation and nuclear translocation of STAT1alpha.
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Lipid microdomains are required sites for the selective endocytosis and nuclear translocation of IFN-gamma, its receptor chain IFN-gamma receptor-1, and the phosphorylation and nuclear translocation of STAT1alpha.

机译:脂质微区是IFN-γ的选择性内吞作用和核易位,其受体链IFN-γ受体1以及STAT1alpha的磷酸化和核易位的必需位点。

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摘要

IFN-gamma contains a nuclear localization sequence that may play a role in the nuclear transport of activated STAT1alpha via a complex of IFN-gamma/IFN-gamma receptor (IFNGR)-1/STAT1alpha with the nuclear importer nucleoprotein interactor 1. In this study, we examine the mechanism of endocytosis of IFNGR-1 and the relationship of its nuclear translocation to that of STAT1alpha. In untreated WISH cells, both IFNGR-1 and IFNGR-2 were constitutively localized within caveolae-like microdomains isolated from plasma membrane. However, treatment of cells with IFN-gamma resulted in rapid migration of IFNGR-1, but not IFNGR-2, from these microdomains. Filipin pretreatment, which specifically inhibits endocytosis from caveolae-like microdomains, inhibited the nuclear translocation of IFN-gamma and IFNGR-1 as well as the tyrosine phosphorylation and nuclear translocation of STAT1alpha, but did not affect the binding of IFN-gamma to these cells. In the Jurkat T lymphocyte cell line, which does not express caveolin-1, nuclear translocation of IFNGR-1 and STAT1alpha were similarly inhibited by filipin pretreatment. Isolation of lipid microdomains from Jurkat cells showed that both IFNGR-1 and IFNGR-2 were associated with lipid microdomains only after stimulation with IFN-gamma, suggesting that the IFNGR subunits are recruited to lipid microdomains by IFN-gamma binding in lymphocytes (Jurkat) in contrast to their constitutive presence in epithelial (WISH) cells. In contrast, treatments that block clathrin-dependent endocytosis did not inhibit either activation or nuclear translocation of STAT1alpha or the nuclear translocation of IFN-gamma or IFNGR-1. Thus, membrane lipid microdomains play an important role in IFN-gamma-initiated endocytic events involving IFNGR-1, and the nuclear translocation of IFN-gamma, IFNGR-1, and STAT1alpha.
机译:IFN-γ包含一个核定位序列,该序列可能通过IFN-γ/IFN-γ受体(IFNGR)-1 / STAT1alpha与核输入核蛋白相互作用体1的复合体在活化的STAT1alpha的核转运中起作用。 ,我们研究了IFNGR-1的内吞作用机理及其核转位与STAT1alpha的关系。在未处理的WISH细胞中,IFNGR-1和IFNGR-2都组成性地定位在从质膜分离的小窝样微域内。但是,用IFN-γ处理细胞会导致IFNGR-1(而不是IFNGR-2)从这些微区快速迁移。菲律宾预处理可以特异性地抑制来自小窝样微域的内吞作用,可以抑制IFN-γ和IFNGR-1的核易位以及酪氨酸的磷酸化和STAT1alpha的核易位,但不影响IFN-γ与这些细胞的结合。在不表达caveolin-1的Jurkat T淋巴细胞细胞系中,类似地,菲律宾血脂抑制了IFNGR-1和STAT1alpha的核转运。从Jurkat细胞中分离脂质微结构域显示,只有在用IFN-γ刺激后,IFNGR-1和IFNGR-2才与脂质微结构域相关,这表明IFNGR亚基通过淋巴细胞中IFN-γ的结合而募集到脂质微结构域(Jurkat)与它们在上皮(WISH)细胞中的组成性存在相反。相反,阻断网格蛋白依赖性内吞作用的治疗方法既不抑制STAT1α的激活或核转位,也不抑制IFN-γ或IFNGR-1的核转位。因此,膜脂质微区在涉及IFNGR-1的IFN-γ引发的胞吞事件以及IFN-γ,IFNGR-1和STAT1alpha的核易位中起重要作用。

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