逆转二甲双胍在线粒体拉长的裂殖酵母efr3和dnm1(DRP1)突变体中的抗增殖作用。

npj Metabolic Health and Disease Pub Date : 2025-01-01 Epub Date: 2025-02-21 DOI:10.1038/s44324-024-00048-9
Ari Gillespie, Anne-Sophie Mehdorn, Tiffany Q Lim, Tingting Wang, Bridget A Mooney, Ashley J Ovens, Ayla Orang, Jonathan S Oakhill, Michael Z Michael, Janni Petersen
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引用次数: 0

摘要

二甲双胍是一种耐受性良好的药物,经常用于治疗2型糖尿病。长期使用二甲双胍可以显著降低糖尿病和非糖尿病人群的癌症发病率。本文研究了二甲双胍对裂变酵母S. pombe的抑制增殖作用。我们的研究结果表明,二甲双胍对细胞增殖的抑制作用在缺乏amp活化蛋白激酶(AMPK)的情况下是有效的。通过无偏遗传筛选,我们确定了质膜信号传导支架Efr3,它对磷脂酰肌醇信号传导和PI4Ps的产生至关重要,是抵抗二甲双胍抗增殖作用的关键决定因素。efr3的缺失导致ampk依赖性和ampk非依赖性对二甲双胍的耐药。我们发现Efr3并不通过控制酵母中的Ras1活性或其细胞定位来影响细胞增殖。我们观察到线粒体延长的dnm1 (DRP1)突变体也抵抗二甲双胍的抗增殖作用,二甲双胍治疗促进线粒体融合。长时间暴露于二甲双胍后的代谢测量表明,野生型和efr3缺失的呼吸减少,然而,efr3缺失的减少不太明显,efr3缺失也含有延长的线粒体。很可能线粒体融合增强了酵母对二甲双胍暴露的适应性。我们一起为细胞对二甲双胍的反应提供了一个新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reversal of metformin's anti-proliferative effect in fission yeast efr3 and dnm1 (DRP1) mutants with elongated mitochondria.

Metformin is a well-tolerated drug frequently prescribed for managing type 2 diabetes. Extended metformin use has been linked to a significant decrease in cancer incidence across both diabetic and non-diabetic populations. Here we investigate the anti-proliferative effects of metformin on fission yeast S. pombe. Our findings demonstrate that metformin's inhibitory impact on cell proliferation is effective in the absence of AMP-activated protein kinase (AMPK). Using an unbiased genetic screen we identified the plasma membrane signalling scaffold Efr3, critical for phosphatidylinositol signalling and the generation of PI4Ps, as a key determinant of resistance to the anti-proliferative effect of metformin. Deletion of efr3 resulted in both AMPK-dependent and AMPK-independent resistance to metformin. We show that Efr3 does not influence cell proliferation by controlling Ras1 activity or its cellular localization in yeast. We observe that dnm1 (DRP1) mutants with elongated mitochondria are also resistant to the anti-proliferative effect of metformin and that metformin treatment promotes mitochondrial fusion. Metabolic measurements after prolonged metformin exposure demonstrated a reduction in respiration in both wild type and the efr3 deletion, however, that reduction is less pronounced in the efr3 deletion, which also contained elongated mitochondria. It is likely that mitochondrial fusion enhances yeast fitness in response to metformin exposure. Together we provide a new perspective on the cellular response to metformin.

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