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人T细胞白血病病毒I型感染及表达Tax蛋白的T细胞中IκBα的组成型磷酸化与周转

Constitutive phosphorylation and turnover of I kappa B alpha in human T-cell leukemia virus type I-infected and Tax-expressing T cells.

作者信息

Lacoste J, Petropoulos L, Pépin N, Hiscott J

机构信息

Abe Stern Cancer Research Laboratory, Lady Davis Institute for Medical Research, Sir Mortimer B. Davis-Jewish General Hospital, Montréal, Québec, Canada.

出版信息

J Virol. 1995 Jan;69(1):564-9. doi: 10.1128/JVI.69.1.564-569.1995.

Abstract

Human T-cell leukemia virus type I (HTLV-I) encodes a strong transcriptional activator, Tax, that stimulates transcription indirectly through the viral long terminal repeat and also activates a number of cellular genes via association with host transcription factors. The NF-kappa B/Rel pathway is a target for Tax trans-activation, and Tax has been correlated with increased NF-kappa B-binding activity and NF-kappa B-dependent gene expression in HTLV-I-infected cells. In this study we demonstrate that constitutive phosphorylation and increased turnover of the regulatory I kappa B alpha protein in HTLV-I-infected MT-2 and C8166 cells and Tax-expressing 19D cells contribute to constitutive NF-kappa B-binding activity, which consists primarily of c-Rel, p52(NFKB2), and p50(NFKB1). I kappa B alpha mRNA expression is also increased 7- to 20-fold in these cells, although the steady-state level of I kappa B alpha protein is reduced in HTLV-I-infected and Tax-expressing T cells. These results indicate that the viral Tax protein, by indirectly mediating phosphorylation of I kappa B, may target I kappa B alpha for rapid degradation, thus leading to constitutive NF-kappa B activity.

摘要

人类I型T细胞白血病病毒(HTLV-I)编码一种强大的转录激活因子Tax,它通过病毒长末端重复序列间接刺激转录,还通过与宿主转录因子结合激活许多细胞基因。NF-κB/Rel信号通路是Tax反式激活的靶点,并且Tax与HTLV-I感染细胞中NF-κB结合活性增加以及NF-κB依赖的基因表达相关。在本研究中,我们证明在HTLV-I感染的MT-2和C8166细胞以及表达Tax的19D细胞中,调节性IκBα蛋白的组成型磷酸化和周转率增加导致了组成型NF-κB结合活性,其主要由c-Rel、p52(NFKB2)和p50(NFKB1)组成。在这些细胞中,IκBα mRNA表达也增加了7至20倍,尽管在HTLV-I感染和表达Tax的T细胞中IκBα蛋白的稳态水平降低。这些结果表明,病毒Tax蛋白通过间接介导IκB的磷酸化,可能靶向IκBα进行快速降解,从而导致组成型NF-κB活性。

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