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eIF4GI links nutrient sensing by mTOR to cell proliferation and inhibition of autophagy

机译:eIF4GI将mTOR的营养感应与细胞增殖和自噬抑制联系起来

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摘要

Translation initiation factors have complex functions in cells that are not yet understood. We show that depletion of initiation factor eIF4GI only modestly reduces overall protein synthesis in cells, but phenocopies nutrient starvation or inhibition of protein kinase mTOR, a key nutrient sensor. eIF4GI depletion impairs cell proliferation, bioenergetics, and mitochondrial activity, thereby promoting autophagy. Translation of mRNAs involved in cell growth, proliferation, and bioenergetics were selectively inhibited by reduction of eIF4GI, as was the mRNA encoding Skp2 that inhibits p27, whereas catabolic pathway factors were increased. Depletion or overexpression of other eIF4G family members did not recapitulate these results. The majority of mRNAs that were translationally impaired with eIF4GI depletion were excluded from polyribosomes due to the presence of multiple upstream open reading frames and low mRNA abundance. These results suggest that the high levels of eIF4GI observed in many breast cancers might act to specifically increase proliferation, prevent autophagy, and release tumor cells from control by nutrient sensing.
机译:翻译起始因子在尚不了解的细胞中具有复杂的功能。我们显示,起始因子eIF4GI的耗竭仅适度降低了细胞中的整体蛋白质合成,但是表型营养缺乏或蛋白激酶mTOR(一种关键营养传感器)的抑制作用。 eIF4GI耗尽会损害细胞增殖,生物能和线粒体活性,从而促进自噬。通过减少eIF4GI选择性抑制与细胞生长,增殖和生物能有关的mRNA的翻译,编码抑制p27的Skp2的mRNA则被选择性抑制,而分解代谢途径因子则增加。其他eIF4G家族成员的耗竭或过度表达不能概括这些结果。由于存在多个上游开放阅读框和低mRNA丰度,大多数因eIF4GI缺失而翻译受损的mRNA被排除在多核糖体之外。这些结果表明,在许多乳腺癌中观察到的高水平的eIF4GI可能通过特异性营养来特异性地增加增殖,防止自噬并释放肿瘤细胞。

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