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首页> 外文期刊>The international journal of biochemistry and cell biology >Interference with the mitochondrial bioenergetics fuels reprogramming to pluripotency via facilitation of the glycolytic transition
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Interference with the mitochondrial bioenergetics fuels reprogramming to pluripotency via facilitation of the glycolytic transition

机译:通过促进糖酵解转变,干扰线粒体生物能燃料可将其重编程为多能性

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摘要

The switch in cell metabolism from oxidative phosphorylation to glycolysis is critical for the reprogramming of cells to pluripotency. Here, we demonstrate that the disturbance of mitochondrial metabolism by canonical mitochondrial inhibitors enhances metabolic reprogramming toward a glycolytic state, enabling the highly efficient generation of induced pluripotent stem cells. This interference with mitochondrial bioenergetics resulted in enriched reprogrammable subpopulations and accelerated the conversion of refractory intermediates to pluripotent states without requiring additional genetic or epigenetic modifications. Conversely, the reprogramming efficiency and accelerated reprogramming kinetics promoted by mitochondrial inhibition were obstructed by glycolysis inhibitors. We suggest that changes in mitochondrial bioenergetics are a novel mechanism involved in the regulation of cell fate and, more importantly, in the reprogramming of cells to pluripotency.
机译:细胞代谢从氧化磷酸化到糖酵解的转变对于将细胞重新编程为多能性至关重要。在这里,我们证明了典型的线粒体抑制剂对线粒体代谢的干扰增强了向糖酵解状态的代谢重编程,从而能够高效诱导多能干细胞的产生。线粒体生物能量学的这种干扰导致了丰富的可重编程亚群,并加速了耐火中间体向多能态的转化,而无需进行额外的遗传或表观遗传修饰。相反,线粒体抑制促进的重编程效率和加速的重编程动力学被糖酵解抑制剂所阻碍。我们建议线粒体生物能学的变化是一种新的机制,参与调节细胞命运,更重要的是,将细胞重编程为多能性。

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