Dubé Nadia, Bourdeau Annie, Heinonen Krista M, Cheng Alan, Loy Ailsa Lee, Tremblay Michel L
McGill Cancer Centre, Department of Biochemistry, and Division of Experimental Medicine, McGill University, Montreal, Quebec, Canada.
Cancer Res. 2005 Nov 1;65(21):10088-95. doi: 10.1158/0008-5472.CAN-05-1353.
Protein tyrosine phosphatase 1B (PTP1B) is involved in multiple signaling pathways by down-regulating several tyrosine kinases. For example, gene-targeting studies in mice have established PTP1B as a critical physiologic regulator of metabolism by attenuating insulin signaling. PTP1B is an important target for the treatment of diabetes, because the PTP1B null mice are resistant to diet-induced diabetes and obesity. On the other hand, despite the potential for enhanced oncogenic signaling in the absence of PTP1B, PTP1B null mice do not develop spontaneous tumors. Because the majority of human cancers harbor mutations in p53, we generated p53/PTP1B double null mice to elucidate the role of PTP1B in tumorigenesis. We show that genetic ablation of PTP1B in p53 null mice decreases survival rate and increases susceptibility towards the development of B lymphomas. This suggested a role for PTP1B in lymphopoiesis, and we report that PTP1B null mice have an accumulation of B cells in bone marrow and lymph nodes, which contributed to the increased incidence of B lymphomas. The mean time of tumor development and tumor spectrum are unchanged in p53-/-PTP1B+/- mice. We conclude that PTP1B is an important determinant of the latency and type of tumors in a p53-deficient background through its role in the regulation of B-cell development.
蛋白酪氨酸磷酸酶1B(PTP1B)通过下调多种酪氨酸激酶参与多条信号通路。例如,小鼠基因靶向研究已证实PTP1B通过减弱胰岛素信号传导,是新陈代谢的关键生理调节因子。PTP1B是糖尿病治疗的重要靶点,因为PTP1B基因敲除小鼠对饮食诱导的糖尿病和肥胖具有抗性。另一方面,尽管在缺乏PTP1B的情况下可能增强致癌信号传导,但PTP1B基因敲除小鼠不会自发形成肿瘤。由于大多数人类癌症中p53存在突变,我们构建了p53/PTP1B双基因敲除小鼠,以阐明PTP1B在肿瘤发生中的作用。我们发现,在p53基因敲除小鼠中,PTP1B基因缺失会降低生存率,并增加患B淋巴瘤的易感性。这表明PTP1B在淋巴细胞生成中发挥作用,并且我们报道PTP1B基因敲除小鼠骨髓和淋巴结中B细胞积聚,这导致B淋巴瘤发病率增加。p53-/-PTP1B+/-小鼠的肿瘤发生平均时间和肿瘤谱没有变化。我们得出结论,PTP1B通过其在B细胞发育调节中的作用,是p53缺陷背景下肿瘤潜伏期和类型的重要决定因素。