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Obesogenic high-fat diet heightens aerobic glycolysis through hyperactivation of oncogenic KRAS

机译:致肥胖的高脂饮食通过致癌性KRAS的过度活化增强有氧糖酵解

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摘要

Oncogenic KRAS plays a vital role in controlling tumor metabolism by enhancing aerobic glycolysis. Obesity driven by chronic consumption of high-fat diet (HFD) is a major risk factor for oncogenic KRAS-mediated pancreatic ductal adenocarcinoma (PDAC). However, the role of HFD in KRAS-mediated metabolic reprogramming has been obscure. Here, by using genetically engineered mouse models expressing an endogenous level of KRASG12D in pancreatic acinar cells, we demonstrate that hyperactivation of KRASG12D by obesogenic HFD, as compared to carbohydrate-rich diet, is responsible for enhanced aerobic glycolysis that associates with critical pathogenic responses in the path towards PDAC. Ablation of Cox-2 attenuates KRAS hyperactivation leading to the reversal of both aggravated aerobic glycolysis and high-grade dysplasia under HFD challenge. Our data highlight a pivotal role of the cooperative interaction between obesity-ensuing HFD and oncogenic KRAS in driving the heightened aerobic glycolysis during pancreatic tumorigenesis and suggest that in addition to directly targeting KRAS and aerobic glycolysis pathway, strategies to target the upstream of KRAS hyperactivation may bear important therapeutic value.
机译:致癌性KRAS通过增强有氧糖酵解在控制肿瘤代谢中起着至关重要的作用。长期食用高脂饮食(HFD)驱动的肥胖是致癌性KRAS介导的胰腺导管腺癌(PDAC)的主要危险因素。但是,HFD在KRAS介导的代谢重编程中的作用一直不清楚。在这里,通过使用在胰腺腺泡细胞中表达内源性KRAS G12D 的基因工程小鼠模型,我们证明与碳水化合物相比,致肥胖HFD对KRAS G12D 的过度激活饮食丰富,可促进有氧糖酵解,与PDAC途径中的关键病原性反应有关。 Cox-2的消融减弱了KRAS过度活化,导致HFD攻击下有氧糖酵解加重和高度不典型增生的逆转。我们的数据强调了肥胖导致的HFD与致癌KRAS之间的相互作用在驱动胰腺癌发生过程中需氧糖酵解增强方面的关键作用,并建议除了直接靶向KRAS和有氧糖酵解途径外,靶向KRAS过度活化上游的策略可能具有重要的治疗价值。

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