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Akt亚型在双阴性至双阳性胸腺细胞转变中的贡献不均等。

Unequal contribution of Akt isoforms in the double-negative to double-positive thymocyte transition.

作者信息

Mao Changchuin, Tili Esmerina G, Dose Marei, Haks Mariëlle C, Bear Susan E, Maroulakou Ioanna, Horie Kyoji, Gaitanaris George A, Fidanza Vincenzo, Ludwig Thomas, Wiest David L, Gounari Fotini, Tsichlis Philip N

机构信息

Molecular Oncology Research Institute, Tufts-New England Medical Center, 750 Washington Street, Boston, MA 02111, USA.

出版信息

J Immunol. 2007 May 1;178(9):5443-53. doi: 10.4049/jimmunol.178.9.5443.

Abstract

Pre-TCR signals regulate the transition of the double-negative (DN) 3 thymocytes to the DN4, and subsequently to the double-positive (DP) stage. In this study, we show that pre-TCR signals activate Akt and that pharmacological inhibition of the PI3K/Akt pathway, or combined ablation of Akt1 and Akt2, and to a lesser extent Akt1 and Akt3, interfere with the differentiation of DN3 and the accumulation of DP thymocytes. Combined ablation of Akt1 and Akt2 inhibits the proliferation of DN4 cells, while combined ablation of all Akt isoforms also inhibits the survival of all the DN thymocytes. Finally, the combined ablation of Akt1 and Akt2 inhibits the survival of DP thymocytes. Constitutively active Lck-Akt1 transgenes had the opposite effects. We conclude that, following their activation by pre-TCR signals, Akt1, Akt2, and, to a lesser extent, Akt3 promote the transition of DN thymocytes to the DP stage, in part by enhancing the proliferation and survival of cells undergoing beta-selection. Akt1 and Akt2 also contribute to the differentiation process by promoting the survival of the DP thymocytes.

摘要

前T细胞受体(Pre-TCR)信号调节双阴性(DN)3胸腺细胞向DN4的转变,并随后向双阳性(DP)阶段转变。在本研究中,我们表明Pre-TCR信号激活Akt,并且PI3K/Akt途径的药理学抑制,或Akt1和Akt2的联合缺失,以及在较小程度上Akt1和Akt3的联合缺失,会干扰DN3的分化和DP胸腺细胞的积累。Akt1和Akt2的联合缺失抑制DN4细胞的增殖,而所有Akt亚型的联合缺失也抑制所有DN胸腺细胞的存活。最后,Akt1和Akt2的联合缺失抑制DP胸腺细胞的存活。组成型活性Lck-Akt1转基因具有相反的作用。我们得出结论,在被Pre-TCR信号激活后,Akt1、Akt2以及在较小程度上的Akt3促进DN胸腺细胞向DP阶段的转变,部分是通过增强经历β选择的细胞的增殖和存活。Akt1和Akt2还通过促进DP胸腺细胞的存活来促进分化过程。

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