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Lipophilic Cations Rescue the Growth of Yeast under the Conditions of Glycolysis Overflow

机译:亲脂性阳离子在糖溶解溢出条件下拯救酵母的生长

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摘要

Chemicals inducing a mild decrease in the ATP/ADP ratio are considered as caloric restriction mimetics as well as treatments against obesity. Screening for such chemicals in animal model systems requires a lot of time and labor. Here, we present a system for the rapid screening of non-toxic substances causing such a de-energization of cells. We looked for chemicals allowing the growth of yeast lacking trehalose phosphate synthase on a non-fermentable carbon source in the presence of glucose. Under such conditions, the cells cannot grow because the cellular phosphate is mostly being used to phosphorylate the sugars in upper glycolysis, while the biosynthesis of bisphosphoglycerate is blocked. We reasoned that by decreasing the ATP/ADP ratio, one might prevent the phosphorylation of the sugars and also boost bisphosphoglycerate synthesis by providing the substrate, i.e., inorganic phosphate. We confirmed that a complete inhibition of oxidative phosphorylation alleviates the block. As our system includes a non-fermentable carbon source, only the chemicals that did not cause a complete block of mitochondrial ATP synthesis allowed the initial depletion of glucose followed by respiratory growth. Using this system, we found two novel compounds, dodecylmethyl diphenylamine (FS1) and diethyl (tetradecyl) phenyl ammonium bromide (Kor105), which possess a mild membrane-depolarizing activity.
机译:在ATP / ADP比率中诱导轻度降低的化学物质被认为是热量限制性模拟物以及对肥胖症的治疗。用于动物模型系统中这种化学品的筛选需要大量的时间和劳动力。在这里,我们提出了一种用于快速筛选无毒物质的系统,导致细胞的这种断电。我们寻找化学品,允许在葡萄糖存在下在不可发酵的碳源上缺乏海藻糖磷酸盐合成酶的生长。在这种条件下,细胞不能生长,因为细胞磷酸盐主要用于在上糖酵解中磷酸化糖,而双磷胶的生物合成被阻断。我们推理的是,通过降低ATP / ADP比率,可以通过提供基材,即无机磷酸盐来防止糖的磷酸化,并且还通过提供基材。我们证实,完全抑制氧化磷酸化可减轻嵌段。随着我们的系统包括不发酵的碳源,只有没有引起全粒细胞ATP合成嵌段的化学物质允许术语初始耗尽,然后呼吸生长。使用该系统,我们发现了两种新化合物,十二烷基二苯胺(FS1)和二乙基氨基溴化物(KOR105),其具有轻度膜 - 去极化活性。

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