E2F1 Suppresses Oxidative Metabolism and Endothelial Differentiation of Bone Marrow Progenitor Cells

E2F1 抑制骨髓祖细胞的氧化代谢和内皮分化

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作者:Shiyue Xu, Jun Tao, Liu Yang, Eric Zhang, Chan Boriboun, Junlan Zhou, Tianjiao Sun, Min Cheng, Kai Huang, Jiawei Shi, Nianguo Dong, Qinghua Liu, Ting C Zhao, Hongyu Qiu, Robert A Harris, Navdeep S Chandel, Douglas W Losordo, Gangjian Qin

Conclusion

Our results suggest a novel mechanism by which E2F1 mediates the metabolic control of BM PC differentiation, and strategies that inhibit E2F1 or enhance oxidative metabolism in BM PCs may improve the effectiveness of cell therapy.

Objective

We sought to define the role of E2F1 in the regulation of BM PC function.

Results

Ablation of E2F1 (E2F1 deficient) in mouse BM PCs increases oxidative metabolism and reduces lactate production, resulting in enhanced endothelial differentiation. The metabolic switch in E2F1-deficient BM PCs is mediated by a reduction in the expression of pyruvate dehydrogenase kinase 4 and pyruvate dehydrogenase kinase 2; overexpression of pyruvate dehydrogenase kinase 4 reverses the enhancement of oxidative metabolism and endothelial differentiation. Deletion of E2F1 in the BM increases the amount of PC-derived endothelial cells in the ischemic myocardium, enhances vascular growth, reduces infarct size, and improves cardiac function after myocardial infarction.

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