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Metastatic Colorectal Cancer Rewrites Metabolic Program Through a Glut3-YAP-dependent Signaling Circuit

机译:转移性结直肠癌通过依赖于Glut3-YAP的信号传导电路重写代谢程序

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摘要

>Rationale: Cancer cells reprogram cellular metabolism to fulfill their needs for rapid growth and metastasis. However, the mechanism controlling this reprogramming is poorly understood. We searched for upregulated signaling in metastatic colorectal cancer and investigated the mechanism by which Glut3 promotes tumor metastasis.>Methods: We compared RNA levels and glycolytic capacity in primary and metastatic colon cancer. The expression and association of Glut3 with clinical prognosis in colon cancer tissues was determined by immunohistochemistry. Glut3 gain-of-function and loss-of-function were established using colon cancer HCT116, HT29, and metastatic 116-LM cells, and tumor invasiveness and stemness properties were evaluated. Metabolomic profiles were analyzed by GC/MS and CE-TOF/MS. The metastatic burden in mice fed a high-fat sucrose diet was assessed by intravenous inoculation with Glut3 knockdown 116-LM cells.>Results: Upregulation of glycolytic genes and glycolytic capacity was detected in metastatic colorectal cancer cells. Specifically, Glut3 overexpression was associated with metastasis and poor survival in colorectal cancer patients. Mechanistically, Glut3 promoted invasiveness and stemness in a Yes-associated protein (YAP)-dependent manner. Activation of YAP in turn transactivated Glut3 and regulated a group of glycolytic genes. Interestingly, the expression and phosphorylation of PKM2 were concomitantly upregulated in metastatic colorectal cancer, and it was found to interact with YAP and enhance the expression of Glut3. Importantly, a high-fat high-sucrose diet promoted tumor metastasis, whereas the inhibition of either Glut3 or YAP effectively reduced the metastatic burden.>Conclusion: Activation of the Glut3-YAP signaling pathway acts as a master activator to reprogram cancer metabolism and thereby promotes metastasis. Our findings reveal the importance of metabolic reprogramming in supporting cancer metastasis as well as possible therapeutic targets.
机译:>理性:癌细胞重新编程细胞代谢,以满足其快速生长和转移的需要。但是,控制这种重新编程的机制了解甚少。我们在转移性结直肠癌中寻找上调的信号,并研究了Glut3促进肿瘤转移的机制。>方法:我们比较了原发性和转移性结肠癌的RNA水平和糖酵解能力。通过免疫组织化学测定Glut3在结肠癌组织中的表达及其与临床预后的关系。使用结肠癌HCT116,HT29和转移性116-LM细胞建立Glut3功能获得和功能丧失,并评估肿瘤的侵袭性和干性。通过GC / MS和CE-TOF / MS分析代谢组学谱。通过静脉内接种Glut3基因敲除的116-LM细胞来评估高脂蔗糖饮食喂养的小鼠的转移负担。>结果:在转移性结直肠癌细胞中检测到糖酵解基因的上调和糖酵解能力。具体而言,Glut3的过表达与大肠癌患者的转移和生存不良有关。从机制上讲,Glut3以Yes相关蛋白(YAP)依赖的方式促进侵袭性和干性。 YAP的激活反过来会激活Glut3,并调节一组糖酵解基因。有趣的是,在转移性结直肠癌中,PKM2的表达和磷酸化同时被上调,并且发现它与YAP相互作用并增强了Glut3的表达。重要的是,高脂高蔗糖饮食可促进肿瘤转移,而抑制Glut3或YAP可有效减少转移负担。>结论:Glut3-YAP信号通路的激活是主要激活剂重新编程癌症代谢,从而促进转移。我们的发现揭示了代谢重编程在支持癌症转移以及可能的治疗靶标中的重要性。

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