Junior Research Group 1, Interdisciplinary Center for Clinical Research, Friedrich-Alexander-University Erlangen-Nürnberg (FAU), Erlangen, Germany.
Department of Internal Medicine 5, Hematology and Oncology, University Hospital Erlangen, Erlangen, Germany.
Cancer Res. 2018 Apr 1;78(7):1604-1618. doi: 10.1158/0008-5472.CAN-17-2834. Epub 2018 Jan 17.
Cancer cells alter their metabolism to support their malignant properties. In this study, we report that the glucose-transforming polyol pathway (PP) gene aldo-keto-reductase-1-member-B1 () strongly correlates with epithelial-to-mesenchymal transition (EMT). This association was confirmed in samples from lung cancer patients and from an EMT-driven colon cancer mouse model with p53 deletion. , mesenchymal-like cancer cells showed increased AKR1B1 levels, and knockdown was sufficient to revert EMT. An equivalent level of EMT suppression was measured by targeting the downstream enzyme sorbitol-dehydrogenase (SORD), further pointing at the involvement of the PP. Comparative RNA sequencing confirmed a profound alteration of EMT in PP-deficient cells, revealing a strong repression of TGFβ signature genes. Excess glucose was found to promote EMT through autocrine TGFβ stimulation, while PP-deficient cells were refractory to glucose-induced EMT. These data show that PP represents a molecular link between glucose metabolism, cancer differentiation, and aggressiveness, and may serve as a novel therapeutic target. A glucose-transforming pathway in TGFβ-driven epithelial-to-mesenchymal transition provides novel mechanistic insights into the metabolic control of cancer differentiation. .
癌细胞改变其代谢以支持其恶性特性。在这项研究中,我们报告葡萄糖转化多元醇途径(PP)基因醛酮还原酶-1 成员-B1()与上皮间质转化(EMT)强烈相关。这种相关性在肺癌患者的样本和具有 p53 缺失的 EMT 驱动的结肠癌小鼠模型中得到了证实。在 EMT 样癌细胞中,AKR1B1 水平升高,而 AKR1B1 敲低足以使 EMT 逆转。通过靶向下游酶山梨醇脱氢酶(SORD)进行同等水平的 EMT 抑制测量,进一步指出了 PP 的参与。比较 RNA 测序证实,在 PP 缺陷细胞中 EMT 发生了深刻改变,揭示了 TGFβ 特征基因的强烈抑制。发现过量葡萄糖通过自分泌 TGFβ 刺激促进 EMT,而 PP 缺陷细胞对葡萄糖诱导的 EMT 无反应。这些数据表明,PP 代表了葡萄糖代谢、癌症分化和侵袭性之间的分子联系,可能成为一种新的治疗靶点。TGFβ 驱动的上皮间质转化中的葡萄糖转化途径为癌症分化的代谢控制提供了新的机制见解。