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BCR-ABL通过PI3K途径诱导Skp2表达,以促进慢性粒细胞白血病细胞中p27Kip1的降解和增殖。

BCR-ABL induces the expression of Skp2 through the PI3K pathway to promote p27Kip1 degradation and proliferation of chronic myelogenous leukemia cells.

作者信息

Andreu Enrique J, Lledó Elisa, Poch Enric, Ivorra Carmen, Albero M Pilar, Martínez-Climent José Angel, Montiel-Duarte Cristina, Rifón José, Pérez-Calvo Javier, Arbona Cristina, Prósper Felipe, Pérez-Roger Ignacio

机构信息

Division of Cancer, Area of Cell Therapy and Hematology Service, Clinica Universitaria/School of Medicine, Foundation for Applied Medical Research, University of Navarra, Pamplona, Spain.

出版信息

Cancer Res. 2005 Apr 15;65(8):3264-72. doi: 10.1158/0008-5472.CAN-04-1357.

Abstract

Chronic myelogenous leukemia (CML) is characterized by the expression of the BCR-ABL tyrosine kinase, which results in increased cell proliferation and inhibition of apoptosis. In this study, we show in both BCR-ABL cells (Mo7e-p210 and BaF/3-p210) and primary CML CD34+ cells that STI571 inhibition of BCR-ABL tyrosine kinase activity results in a G(1) cell cycle arrest mediated by the PI3K pathway. This arrest is associated with a nuclear accumulation of p27(Kip1) and down-regulation of cyclins D and E. As a result, there is a reduction of the cyclin E/Cdk2 kinase activity and of the retinoblastoma protein phosphorylation. By quantitative reverse transcription-PCR we show that BCR-ABL/PI3K regulates the expression of p27(Kip1) at the level of transcription. We further show that BCR-ABL also regulates p27(Kip1) protein levels by increasing its degradation by the proteasome. This degradation depends on the ubiquitinylation of p27(Kip1) by Skp2-containing SFC complexes: silencing the expression of Skp2 with a small interfering RNA results in the accumulation of p27(Kip1). We also demonstrate that BCR-ABL cells show transcriptional up-regulation of Skp2. Finally, expression of a p27(Kip1) mutant unable of being recognized by Skp2 results in inhibition of proliferation of BCR-ABL cells, indicating that the degradation of p27(Kip1) contributes to the pathogenesis of CML. In conclusion, these results suggest that BCR-ABL regulates cell cycle in CML cells at least in part by inducing proteasome-mediated degradation of the cell cycle inhibitor p27(Kip1) and provide a rationale for the use of inhibitors of the proteasome in patients with BCR-ABL leukemias.

摘要

慢性粒细胞白血病(CML)的特征是BCR-ABL酪氨酸激酶的表达,这导致细胞增殖增加和细胞凋亡受到抑制。在本研究中,我们在BCR-ABL细胞(Mo7e-p210和BaF/3-p210)以及原发性CML CD34+细胞中均表明,STI571对BCR-ABL酪氨酸激酶活性的抑制导致由PI3K途径介导的G(1)期细胞周期停滞。这种停滞与p27(Kip1)的核内积累以及细胞周期蛋白D和E的下调有关。结果,细胞周期蛋白E/Cdk2激酶活性和视网膜母细胞瘤蛋白磷酸化水平降低。通过定量逆转录-PCR,我们表明BCR-ABL/PI3K在转录水平上调节p27(Kip1)的表达。我们进一步表明,BCR-ABL还通过增加蛋白酶体对其的降解来调节p27(Kip1)蛋白水平。这种降解依赖于含Skp2的SFC复合物对p27(Kip1)的泛素化:用小干扰RNA沉默Skp2的表达会导致p27(Kip1)的积累。我们还证明BCR-ABL细胞显示Skp2的转录上调。最后,表达一种不能被Skp2识别的p27(Kip1)突变体导致BCR-ABL细胞增殖受到抑制,表明p27(Kip1)的降解有助于CML的发病机制。总之,这些结果表明BCR-ABL至少部分地通过诱导蛋白酶体介导的细胞周期抑制剂p27(Kip1)的降解来调节CML细胞中的细胞周期,并为在BCR-ABL白血病患者中使用蛋白酶体抑制剂提供了理论依据。

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