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复合突变小鼠中协同致癌基因的鉴定与表征

Identification and characterization of collaborating oncogenes in compound mutant mice.

作者信息

Berns A, Mikkers H, Krimpenfort P, Allen J, Scheijen B, Jonkers J

机构信息

Division of Molecular Genetics, The Netherlands Cancer Institute and Centre of Biomedical Genetics, Amsterdam.

出版信息

Cancer Res. 1999 Apr 1;59(7 Suppl):1773s-1777s.

Abstract

We have used proviral tagging in tumor-prone transgenic mice to identify collaborating oncogenes and genes contributing to tumor progression. This has yielded a series of oncogenes that could be assigned to different complementation groups in transformation: the myc, Pim, Bmi1, and Frat1 complementation groups. Frat1 is involved in tumor progression and appears to function in the Wnt signaling pathway. Overexpression of Fratl confers a growth advantage to transplanted tumor cells in vivo and to cells grown in vitro at high density. Frat1 might exert its activity by impairing the kinase activity of Gsk3beta, which is involved in the degradation of beta-catenin. Pim genes appear to act in tumor initiation and show strong synergism with myc in lymphomagenesis. Overexpression of Pim1 can also overcome some of the proliferative defects caused by defective interleukin signaling supporting a role of Pim1 in cell proliferation. We have applied proviral tagging in compound mutant Emu-myc/Pim1-/-/Pim2-/- mice to identify genes that can complement for the loss of Pim1 and Pim2 and, therefore, are able to synergize with c-myc in lymphomagenesis. A number of new as well as known genes have been found by this "complementation tagging." The latter included c-kit, Tp12, and cyclin D2, suggesting that Pim kinases might act upstream of or parallel to these known proto-oncogenes.

摘要

我们利用易患肿瘤的转基因小鼠中的前病毒标签技术来鉴定协同致癌基因以及促进肿瘤进展的基因。这产生了一系列致癌基因,它们可在转化过程中被归为不同的互补组:myc、Pim、Bmi1和Frat1互补组。Frat1参与肿瘤进展,且似乎在Wnt信号通路中发挥作用。Frat1的过表达赋予体内移植肿瘤细胞以及体外高密度培养细胞生长优势。Frat1可能通过损害参与β-连环蛋白降解的Gsk3β的激酶活性来发挥其作用。Pim基因似乎在肿瘤起始中起作用,并且在淋巴瘤发生过程中与myc表现出强烈的协同作用。Pim1的过表达还能克服因白细胞介素信号缺陷导致的一些增殖缺陷,支持Pim1在细胞增殖中的作用。我们已将前病毒标签技术应用于复合突变的Emu-myc/Pim1-/-/Pim2-/-小鼠,以鉴定能够补偿Pim1和Pim2缺失、从而能够在淋巴瘤发生过程中与c-myc协同作用的基因。通过这种“互补标签”技术已发现了一些新的以及已知的基因。后者包括c-kit、Tp12和细胞周期蛋白D2,这表明Pim激酶可能在这些已知原癌基因的上游或与其平行发挥作用。

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