首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >NF-kappaB-inducing kinase is involved in the activation of the CD28 responsive element through phosphorylation of c-Rel and regulation of its transactivating activity.
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NF-kappaB-inducing kinase is involved in the activation of the CD28 responsive element through phosphorylation of c-Rel and regulation of its transactivating activity.

机译:NF-κB诱导激酶通过c-Rel的磷酸化和其反式激活活性的调节参与CD28响应元件的激活。

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摘要

Previous evidence suggested that NF-kappaB-inducing kinase (NIK) might regulate IL-2 synthesis. However, the molecular mechanism is not understood. In this study, we show that NIK is involved in CD3 plus CD28 activation of IL-2 transcription. Splenic T cells from aly/aly mice (that have a defective NIK protein) have a severe impairment in IL-2 and GM-CSF but not TNF secretion in response to CD3/CD28. This effect takes place at the transcriptional level as overexpression of alyNIK inhibits IL-2 promoter transcription. NIK activates the CD28 responsive element (CD28RE) of the IL-2 promoter and strongly synergizes with c-Rel in this activity. We found that NIK interacts with the N-terminal domain of c-Rel, mapping this interaction to aa 771-947 of NIK. Moreover, NIK phosphorylates the c-Rel C-terminal transactivation domain (TAD) and induces Gal4-c-Rel-transactivating activity. Anti-CD28 activated Gal4-c-Rel transactivation activity, and this effect was inhibited by a NIK-defective mutant. Deletion studies mapped the region of c-Rel responsive to NIK in aa 456-540. Mutation of several serines, including Ser471, in the TAD of c-Rel abrogated the NIK-enhancing activity of its transactivating activity. Interestingly, a Jurkat mutant cell line that expresses one of the mutations of c-Rel (Ser471Asn) has a severe defect in IL-2 and CD28RE-dependent transcription in response to CD3/CD28 or to NIK. Our results support that NIK may be controlling CD28RE-dependent transcription and T cell activation by modulating c-Rel phosphorylation of the TAD. This leads to more efficient transactivation of genes which are dependent on CD28RE sites where c-Rel binds such as the IL-2 promoter.
机译:先前的证据表明,诱导NF-κB的激酶(NIK)可能调节IL-2的合成。但是,分子机制尚不清楚。在这项研究中,我们表明NIK参与了IL-3转录的CD3加CD28激活。来自aly / aly小鼠(具有缺陷的NIK蛋白)的脾T细胞在IL-2和GM-CSF中有严重损伤,但对CD3 / CD28没有TNF分泌。由于alyNIK的过表达抑制了IL-2启动子的转录,因此这种作用发生在转录水平。 NIK激活IL-2启动子的CD28响应元件(CD28RE),并在此活性中与c-Rel强烈协同作用。我们发现NIK与c-Rel的N末端域相互作用,将此相互作用映射到NIK的aa 771-947。此外,NIK使c-Rel C末端反式激活结构域(TAD)磷酸化并诱导Gal4-c-Rel反式激活活性。抗CD28激活了Gal4-c-Rel反式激活活性,而NIK缺陷型突变体抑制了这种作用。缺失研究绘制了氨基酸456-540中对NIK响应的c-Rel区域。 c-Rel的TAD中包括Ser471在内的几种丝氨酸的突变消除了其反式激活活性中NIK增强活性。有趣的是,表达c-Rel突变之一的Jurkat突变细胞系(Ser471Asn)在响应CD3 / CD28或NIK的IL-2和CD28RE依赖性转录中具有严重缺陷。我们的结果支持NIK通过调节TAD的c-Rel磷酸化来控制CD28RE依赖性转录和T细胞活化。这导致依赖c-Rel结合的CD28RE位点(例如IL-2启动子)的基因更有效地反式激活。

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