首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Negative feedback loop in T cell activation through I kappa B kinase-induced phosphorylation and degradation of Bcl10
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Negative feedback loop in T cell activation through I kappa B kinase-induced phosphorylation and degradation of Bcl10

机译:通过IκB激酶诱导的Bcl10磷酸化和降解在T细胞活化中的负反馈回路

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Activation of the transcription factor NF-kappa B after stimulation through antigen receptors is important for lymphocyte differentiation, activation, proliferation, and protection against apoptosis. Much progress has been made in understanding the molecular events leading to NF-kappa B activation, but how this activation is eventually down-regulated is less well understood. Recent studies have indicated that Bcl10 functions downstream of lymphocyte antigen receptors to promote the activation of the I kappa B kinase complex leading to the phosphorylation and degradation of the I kappa B inhibitors of NF-kappa B. Bcl10 has also been implicated in the pathogenesis of mucosa-associated lymphoid tissue lymphoma, possibly in association with its nuclear localization. Here, we provide evidence that the I kappa B kinase complex phosphorylates Bcl10 after T cell antigen receptor stimulation and causes its proteolysis via the beta-TrCP ubiquitin ligase/proteasome pathway. These findings document a negative regulatory activity of the IKK complex and suggest that Bcl10 degradation is part of the regulatory mechanisms that precisely control the response to antigens. Mutants of Bcl10 in the IKK phosphorylation site are resistant to degradation, accumulate in the nucleus, and lead to an increase in IL-2 production after T cell antigen receptor stimulation.
机译:通过抗原受体刺激后,转录因子NF-κB的激活对于淋巴细胞的分化,激活,增殖以及对细胞凋亡的保护很重要。在了解导致NF-κB活化的分子事件方面已经取得了很大进展,但是人们对这种活化最终被下调的方式了解得很少。最近的研究表明,Bcl10在淋巴细胞抗原受体的下游起作用,以促进IκB激酶复合物的活化,从而导致NF-κB的IκB抑制剂的磷酸化和降解。Bcl10也与Bcl10的发病机理有关。黏膜相关淋巴样组织淋巴瘤,可能与其核定位有关。在这里,我们提供的证据表明,IκB激酶复合物在T细胞抗原受体刺激后使Bcl10磷酸化,并通过β-TrCP泛素连接酶/蛋白酶体途径引起其蛋白水解。这些发现证明了IKK复合物的负调节活性,并表明Bcl10降解是精确控制对抗原反应的调节机制的一部分。在TKK抗原受体刺激后,IKK磷酸化位点中的Bcl10突变体具有抗降解能力,在细胞核中积累并导致IL-2产生增加。

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