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CD28介导一种强大的共刺激信号,促使IkappaBbeta快速降解,这与多种NF-kappaB/Rel异二聚体的加速激活相关。

CD28 mediates a potent costimulatory signal for rapid degradation of IkappaBbeta which is associated with accelerated activation of various NF-kappaB/Rel heterodimers.

作者信息

Harhaj E W, Maggirwar S B, Good L, Sun S C

机构信息

Department of Microbiology and Immunology, Pennsylvania State University College of Medicine, Hershey Medical Center, Hershey 17033, USA.

出版信息

Mol Cell Biol. 1996 Dec;16(12):6736-43. doi: 10.1128/MCB.16.12.6736.

Abstract

Optimal activation of T cells requires at least two signals delivered by the T-cell receptor complex and costimulatory molecules such as CD28. The CD28 signaling participates in the transcription of the interleukin-2 gene through activation of an enhancer termed the CD28-responsive element (CD28RE). Stimulation of CD28 enhances mitogen-mediated induction of CD28RE-binding proteins including members of the NF-kappaB/Rel transcription factor family, although the underlying mechanism remains elusive. In this report, we show that CD28 costimulation leads to biphasic induction of NF-kappaB/Rel heterodimers, including early-phase induction of p50/RelA and c-Rel/RelA and late-phase induction of p50/c-Rel. Interestingly, activation of these NF-kappaB/Rel complexes by the CD28 signal is associated with the rapid degradation of both IkappaBalpha and IkappaBbeta, two major cytoplasmic inhibitors of NF-kappaB/Rel. Although IkappaBalpha degradation can be induced by phorbol ester alone, degradation of IkappaBbeta is largely dependent on the CD28 costimulatory signal. We further demonstrate that CD28-mediated transactivation of the CD28RE enhancer is potently inhibited by an N-terminal truncation mutant of IkappaBbeta that is incapable of responding to the degradation signals. Together, these results suggest that the CD28 costimulatory signal augments activation of NF-kappaB/Rel by promoting degradation of IkappaBbeta as well as enhancing degradation of IkappaBalpha and that induction of NF-kappaB/Rel serves as an essential step in the signal-mediated activation of the CD28RE enhancer.

摘要

T细胞的最佳激活至少需要由T细胞受体复合物和共刺激分子(如CD28)传递的两个信号。CD28信号传导通过激活一个称为CD28反应元件(CD28RE)的增强子来参与白细胞介素-2基因的转录。尽管潜在机制仍不清楚,但CD28的刺激增强了有丝分裂原介导的CD28RE结合蛋白的诱导,包括NF-κB/Rel转录因子家族的成员。在本报告中,我们表明CD28共刺激导致NF-κB/Rel异二聚体的双相诱导,包括p50/RelA和c-Rel/RelA的早期诱导以及p50/c-Rel的晚期诱导。有趣的是,CD28信号对这些NF-κB/Rel复合物激活与NF-κB/Rel的两种主要细胞质抑制剂IκBα和IκBβ的快速降解有关。虽然单独的佛波酯可诱导IκBα降解,但IκBβ的降解很大程度上依赖于CD28共刺激信号。我们进一步证明,IκBβ的N端截短突变体(其不能响应降解信号)可有效抑制CD28介导的CD28RE增强子的反式激活。总之,这些结果表明,CD28共刺激信号通过促进IκBβ的降解以及增强IκBα的降解来增强NF-κB/Rel的激活,并且NF-κB/Rel的诱导是信号介导的CD28RE增强子激活的关键步骤。

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