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A genetic mouse model of invasive endometrial cancer driven by concurrent loss of Pten and Lkb1 is highly responsive to mTOR inhibition

机译:由Pten和Lkb1的同时丧失驱动的侵袭性子宫内膜癌的遗传小鼠模型对mTOR抑制高度敏感

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摘要

Signals from the tumor suppressors PTEN and LKB1 converge on mTOR to negatively regulate its function in cancer cells. Notably, both of these suppressors are attenuated in a significant fraction of human endometrial tumors. In this study, we generated a genetic mouse model of endometrial cancer driven by concomitant loss of these suppressors to gain pathophysiological insight into this disease. Dual loss of Pten and Lkb1 in the endometrial epithelium led to rapid development of advanced endometrioid endometrial tumors with 100% penetrance and short host survival. The tumors displayed dysregulated PI3K/Akt and Lkb1/Ampk signaling with hyperactivation of mTOR signaling. Treatment with a dual PI3K/mTOR inhibitor, BEZ235, extended the time before tumor onset and prolonged overall survival. The PI3K inhibitor GDC-0941 used as a single agent reduced the growth rate of primary tumor implants in Pten/Lkb1-deficient mice, and the mTOR inhibitor RAD001 was unexpectedly as effective as BEZ235 in triggering tumor regression. In parallel, we also found that ectopic expression of LKB1 in PTEN/LKB1-deficient human endometrial cancer cells increased their sensitivity to PI3K inhibition. Together, our results demonstrated that Pten/Lkb1-deficient endometrial tumors rely strongly on deregulated mTOR signaling, and they provided evidence that LKB1 status may modulate the response of PTEN-deficient tumors to PI3K or mTOR inhibitors.
机译:来自肿瘤抑制因子PTEN和LKB1的信号在mTOR上汇聚,从而负调节其在癌细胞中的功能。值得注意的是,这两种抑制剂在人子宫内膜肿瘤的很大一部分中均被减弱。在这项研究中,我们生成了子宫内膜癌的遗传小鼠模型,该模型由这些抑制剂的伴随丧失驱动,以获取对该疾病的病理生理学见解。子宫内膜上皮细胞中Pten和Lkb1的双重缺失导致晚期子宫内膜样子宫内膜肿瘤快速发展,其渗透率100%,宿主存活时间短。肿瘤表现出失调的PI3K / Akt和Lkb1 / Ampk信号传导,而mTOR信号传导过度激活。使用PI3K / mTOR双重抑制剂BEZ235进行治疗可延长肿瘤发作之前的时间,并延长总体生存期。 PI3K抑制剂GDC-0941用作单一药物降低了Pten / Lkb1缺陷小鼠的原发性肿瘤植入物的生长速率,而mTOR抑制剂RAD001在触发肿瘤消退方面出乎意料地与BEZ235一样有效。同时,我们还发现在PTEN / LKB1缺失的人子宫内膜癌细胞中LKB1的异位表达增加了其对PI3K抑制的敏感性。在一起,我们的结果表明,缺乏Pten / Lkb1的子宫内膜肿瘤强烈依赖于失调的mTOR信号传导,并且他们提供的证据表明LKB1的状态可能调节了缺乏PTEN的肿瘤对PI3K或mTOR抑制剂的反应。

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