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c-Src phosphorylation and activation of hexokinase promotes tumorigenesis and metastasis

机译:c-Src磷酸化和己糖激酶的激活促进肿瘤发生和转移

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摘要

It is well known that c-Src has important roles in tumorigenesis. However, it remains unclear whether c-Src contributes to metabolic reprogramming. Here we find that c-Src can interact with and phosphorylate hexokinases HK1 and HK2, the rate-limiting enzymes in glycolysis. Tyrosine phosphorylation dramatically increases their catalytic activity and thus enhances glycolysis. Mechanistically, c-Src phosphorylation of HK1 at Tyr732 robustly decreases its Km and increases its Vmax by disrupting its dimer formation. Mutation in c-Src phosphorylation site of either HK1 or HK2 remarkably abrogates the stimulating effects of c-Src on glycolysis, cell proliferation, migration, invasion, tumorigenesis and metastasis. Due to its lower Km for glucose, HK1 rather than HK2 is required for tumour cell survival when glucose is scarce. Importantly, HK1-Y732 phosphorylation level remarkably correlates with the incidence and metastasis of various clinical cancers and may serve as a marker to predict metastasis risk of primary cancers.
机译:众所周知,c-Src在肿瘤发生中具有重要作用。但是,尚不清楚c-Src是否有助于代谢重编程。在这里,我们发现c-Src可以与己糖激酶HK1和HK2相互作用并使其磷酸化,后者是糖酵解中的限速酶。酪氨酸磷酸化显着增加其催化活性,从而增强糖酵解。从机理上讲,HK1在Tyr732处的c-Src磷酸化可通过破坏其二聚体形成而强烈降低其Km并增加其Vmax。 HK1或HK2的c-Src磷酸化位点的突变显着消除了c-Src对糖酵解,细胞增殖,迁移,侵袭,肿瘤发生和转移的刺激作用。由于其葡萄糖的Km较低,因此当葡萄糖不足时,肿瘤细胞存活需要HK1而不是HK2。重要的是,HK1-Y732磷酸化水平与各种临床癌症的发生率和转移密切相关,并可作为预测原发癌转移风险的标志。

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