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LKB1 is a central regulator of tumor initiation and pro-growth metabolism in ErbB2-mediated breast cancer

机译:LKB1是ErbB2介导的乳腺癌中肿瘤起始和促生长代谢的中央调节剂

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BackgroundGermline and somatic mutations in STK11 , the gene encoding the serine/threonine kinase LKB1, are strongly associated with tumorigenesis. While loss of LKB1 expression has been linked to breast cancer, the mechanistic role of LKB1 in regulating breast cancer development, metastasis, and tumor metabolism has remained unclear. MethodsWe have generated and analyzed transgenic mice expressing ErbB2 in the mammary epithelium of LKB1 wild-type or LKB1-deficient mice. We have also utilized ErbB2-expressing breast cancer cells in which LKB1 levels have been reduced using shRNA approaches. These transgenic and xenograft models were characterized for the effects of LKB1 loss on tumor initiation, growth, metastasis and tumor cell metabolism. ResultsWe demonstrate that loss of LKB1 promotes tumor initiation and induces a characteristic shift to aerobic glycolysis (‘Warburg effect’) in a model of ErbB2-mediated breast cancer. LKB1-deficient breast cancer cells display enhanced early tumor growth coupled with increased cell migratory and invasive properties in vitro . We show that ErbB2-positive tumors deficient for LKB1 display a pro-growth molecular and phenotypic signature characterized by elevated Akt/mTOR signaling, increased glycolytic metabolism, as well as increased bioenergetic markers both in vitro and in vivo . We also demonstrate that mTOR contributes to the metabolic reprogramming of LKB1-deficient breast cancer, and is required to drive glycolytic metabolism in these tumors; however, LKB1-deficient breast cancer cells display reduced metabolic flexibility and increased apoptosis in response to metabolic perturbations. ConclusionsTogether, our data suggest that LKB1 functions as a tumor suppressor in breast cancer. Loss of LKB1 collaborates with activated ErbB2 signaling to drive breast tumorigenesis and pro-growth metabolism in the resulting tumors.
机译:背景技术STK11(编码丝氨酸/苏氨酸激酶LKB1的基因)中的种系和体细胞突变与肿瘤发生密切相关。虽然LKB1表达的丧失与乳腺癌有关,但LKB1在调节乳腺癌的发展,转移和肿瘤代谢中的机制作用仍不清楚。方法我们已经生成并分析了在LKB1野生型或LKB1缺陷型小鼠的乳腺上皮中表达ErbB2的转基因小鼠。我们还利用了表达ErbB2的乳腺癌细胞,其中使用shRNA方法降低了LKB1的水平。这些转基因和异种移植模型的特征是LKB1丢失对肿瘤起始,生长,转移和肿瘤细胞代谢的影响。结果我们证明,在ErbB2介导的乳腺癌模型中,LKB1的缺失会促进肿瘤的发生并诱导向有氧糖酵解的特征性转变(“ Warburg效应”)。 LKB1缺陷型乳腺癌细胞显示出增强的早期肿瘤生长,并在体外增加了细胞迁移和侵袭特性。我们显示不足为LKB1的ErbB2阳性肿瘤显示促生长的分子和表型特征为特征的Akt / mTOR信号升高,糖酵解代谢增加以及体外和体内生物能标记增加。我们还证明了mTOR有助于LKB1缺陷型乳腺癌的代谢重编程,并且在这些肿瘤中驱动糖酵解代谢是必需的。然而,LKB1缺陷型乳腺癌细胞在代谢紊乱中表现出降低的代谢灵活性和增加的细胞凋亡。结论总之,我们的数据表明LKB1在乳腺癌中起着抑癌作用。 LKB1的丢失与激活的ErbB2信号传导协同作用,以驱动乳腺肿瘤的发生和促成新陈代谢的肿瘤。

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