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T细胞受体触发对Bcl-2蛋白家族成员Bim表达的调控。

Regulation of expression of Bcl-2 protein family member Bim by T cell receptor triggering.

作者信息

Sandalova Elena, Wei Cheng-Hong, Masucci Maria G, Levitsky Victor

机构信息

Microbiology and Tumor Biology Center, Karolinska Institute, S171 77 Stockholm, Sweden.

出版信息

Proc Natl Acad Sci U S A. 2004 Mar 2;101(9):3011-6. doi: 10.1073/pnas.0400005101. Epub 2004 Feb 17.

Abstract

Bim, a proapoptotic BH3-only member of the Bcl-2 protein family, is required for central and peripheral deletion of T lymphocytes. Mechanisms regulating Bim activity in T cells remain poorly understood. We show that expression of Bim is up-regulated in human T cells after polyclonal or specific T cell receptor triggering. Induction of Bim was affected by the agonistic potency of MHC:peptide ligands. Peptides that failed to induce Bim expression, failed to induce apoptosis in specific T cells, whereas partially agonistic ligands, which trigger death receptor-independent activation-induced cell death (AICD), induced Bim, but were inefficient in up-regulating Bcl-X(L). Activation of protein kinase C and calcineurin appeared to be necessary and sufficient for Bim up-regulation after T cell receptor ligation. Immunosuppressive drugs known to prevent T cell deletion in vivo, such as cyclosporin A or FK506, blocked Bim up-regulation and rescued T cells from death receptor-independent AICD, whereas rapamycin, which allows the development of stable immunological tolerance, did not exhibit these activities. These results define a new mode of Bim regulation, strongly implicate Bim as a mediator of AICD, and suggest that Bim up-regulation can be targeted to influence the outcome of specific immune responses.

摘要

Bim是Bcl-2蛋白家族中仅含BH3结构域的促凋亡成员,是T淋巴细胞在中枢和外周发生缺失所必需的。目前对T细胞中调节Bim活性的机制仍知之甚少。我们发现,在多克隆或特异性T细胞受体触发后,人T细胞中Bim的表达会上调。Bim的诱导受MHC:肽配体的激动剂效力影响。未能诱导Bim表达的肽,也无法在特异性T细胞中诱导凋亡,而部分激动剂配体,可触发不依赖死亡受体的活化诱导细胞死亡(AICD),能诱导Bim,但上调Bcl-X(L)的效率较低。蛋白激酶C和钙调神经磷酸酶的激活似乎对于T细胞受体连接后Bim的上调是必要且充分的。已知在体内可阻止T细胞缺失的免疫抑制药物,如环孢素A或FK506,可阻断Bim的上调,并使T细胞免受不依赖死亡受体的AICD影响,而可促进稳定免疫耐受形成的雷帕霉素则不具备这些活性。这些结果定义了一种新的Bim调节模式,有力地表明Bim是AICD的介质,并提示Bim上调可作为靶点来影响特异性免疫反应的结果。

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