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Cell competition with normal epithelial cells promotes apical extrusion of transformed cells through metabolic changes

Nature Cell Biology(2017)

引用 153|浏览25
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摘要
Recent studies have revealed that newly emerging transformed cells are often apically extruded from epithelial tissues. During this process, normal epithelial cells can recognize and actively eliminate transformed cells, a process called epithelial defence against cancer (EDAC). Here, we show that mitochondrial membrane potential is diminished in RasV12-transformed cells when they are surrounded by normal cells. In addition, glucose uptake is elevated, leading to higher lactate production. The mitochondrial dysfunction is driven by upregulation of pyruvate dehydrogenase kinase 4 (PDK4), which positively regulates elimination of RasV12-transformed cells. Furthermore, EDAC from the surrounding normal cells, involving filamin, drives the Warburg-effect-like metabolic alteration. Moreover, using a cell-competition mouse model, we demonstrate that PDK-mediated metabolic changes promote the elimination of RasV12-transformed cells from intestinal epithelia. These data indicate that non-cell-autonomous metabolic modulation is a crucial regulator for cell competition, shedding light on the unexplored events at the initial stage of carcinogenesis. Fujita et al. find that normal epithelial cells induce metabolic changes in adjacent transformed cells, causing their apical extrusion. The effect is conveyed non-cell-autonomously and relies on PDK4-mediated inhibition of mitochondrial function.
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关键词
Cancer metabolism,Cell signalling,Oncogenes,Life Sciences,general,Cell Biology,Cancer Research,Developmental Biology,Stem Cells
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