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2
The role of BH3-only proteins in the immune system.仅含BH3结构域的蛋白质在免疫系统中的作用。
Nat Rev Immunol. 2005 Mar;5(3):189-200. doi: 10.1038/nri1568.
3
Catalytic domains of tyrosine kinases determine the phosphorylation sites within c-Cbl.酪氨酸激酶的催化结构域决定了c-Cbl内的磷酸化位点。
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Regulation of stem cell factor receptor signaling by Cbl family proteins (Cbl-b/c-Cbl).Cbl家族蛋白(Cbl-b/c-Cbl)对干细胞因子受体信号传导的调控
Blood. 2005 Jan 1;105(1):226-32. doi: 10.1182/blood-2004-05-1768. Epub 2004 Aug 17.
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Ubiquitin ligases and the immune response.泛素连接酶与免疫反应。
Annu Rev Immunol. 2004;22:81-127. doi: 10.1146/annurev.immunol.22.012703.104813.
6
Calcineurin B1 is essential for positive but not negative selection during thymocyte development.钙调神经磷酸酶B1在胸腺细胞发育过程中对阳性选择而非阴性选择至关重要。
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Negative selection and autoimmunity.阴性选择与自身免疫
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8
Cbl signaling networks in the regulation of cell function.Cbl信号网络在细胞功能调控中的作用
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9
Constitutively active protein kinase B enhances Lck and Erk activities and influences thymocyte selection and activation.组成型活性蛋白激酶B增强Lck和Erk活性,并影响胸腺细胞的选择和激活。
J Immunol. 2003 Aug 1;171(3):1285-96. doi: 10.4049/jimmunol.171.3.1285.
10
Negative selection--clearing out the bad apples from the T-cell repertoire.阴性选择——从T细胞库中清除不良细胞。
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c-Cbl 环状结构域功能丧失导致高强度TCR信号传导和胸腺细胞缺失。

Loss of c-Cbl RING finger function results in high-intensity TCR signaling and thymic deletion.

作者信息

Thien Christine B F, Blystad Frøydis D, Zhan Yifan, Lew Andrew M, Voigt Valentina, Andoniou Christopher E, Langdon Wallace Y

机构信息

School of Surgery and Pathology, University of Western Australia, Crawley, Australia.

出版信息

EMBO J. 2005 Nov 2;24(21):3807-19. doi: 10.1038/sj.emboj.7600841. Epub 2005 Oct 6.

DOI:10.1038/sj.emboj.7600841
PMID:16211006
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1276723/
Abstract

Signaling from the T-cell receptor (TCR) in thymocytes is negatively regulated by the RING finger-type ubiquitin ligase c-Cbl. To further investigate this regulation, we generated mice with a loss-of-function mutation in the c-Cbl RING finger domain. These mice exhibit complete thymic deletion by young adulthood, which is not caused by a developmental block, lack of progenitors or peripheral T-cell activation. Rather, this phenotype correlates with greatly increased expression of the CD5 and CD69 activation markers and increased sensitivity to anti-CD3-induced cell death. Thymic loss contrasts the normal fate of the c-Cbl-/- thymus, even though thymocytes from both mutant mice show equivalent enhancement in proximal TCR signaling, Erk activation and calcium mobilization. Remarkably, only the RING finger mutant thymocytes show prominent TCR-directed activation of Akt. We show that the mutant c-Cbl protein itself is essential for activating this pathway by recruiting the p85 regulatory subunit of PI 3-kinase. This study provides a unique model for analyzing high-intensity TCR signals that cause thymocyte deletion and highlights multiple roles of c-Cbl in regulating this process.

摘要

胸腺细胞中T细胞受体(TCR)发出的信号受到环状泛素连接酶c-Cbl的负调控。为了进一步研究这种调控机制,我们构建了c-Cbl环状结构域功能缺失突变的小鼠。这些小鼠在成年早期会出现完全的胸腺缺失,这并非由发育阻滞、祖细胞缺乏或外周T细胞激活所致。相反,这种表型与CD5和CD69激活标志物的表达大幅增加以及对抗CD3诱导的细胞死亡的敏感性增加相关。胸腺缺失与c-Cbl基因敲除小鼠胸腺的正常命运形成对比,尽管两种突变小鼠的胸腺细胞在近端TCR信号传导、Erk激活和钙动员方面均表现出同等程度的增强。值得注意的是,只有环状结构域突变的胸腺细胞显示出显著的TCR介导的Akt激活。我们发现突变的c-Cbl蛋白本身通过招募PI 3激酶的p85调节亚基来激活该信号通路。本研究为分析导致胸腺细胞缺失的高强度TCR信号提供了一个独特的模型,并突出了c-Cbl在调节这一过程中的多种作用。