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HOCI-mediated cell death and metabolic dysfunction in the yeast Saccharomyces cerevisiae

机译:啤酒酵母中HOCI介导的细胞死亡和代谢功能障碍

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The nature of oxidative damage to Saccharomyces cerevisiae caused by levels of HOCl that inhibit cell replication was explored with the intent of identifying the loci of lethal lesions. Functions of cytosolic enzymes-and organelles that are highly sensitive to inactivation by HOCl, including aldolase, glyceraldehyde-3-phosphate dehydrogenase (GAPDH), and the mitochondrion, were only marginally affected by exposure of the yeast to levels of HOCl that completely inhibited colony formation. Loss of function in membrane-localized proteins, including the hexose transporters and PMA1 H+-ATPase, which is the primary proton pump located within the S. cerevisiae plasma membrane, was also marginal and K+ leak rates to the extracellular medium increased only slowly with exposure to increasing amounts of HOCl, indicating that the plasma membrane retained its intrinsic impermeability to ions and metabolites. Adenylate phosphorylation levels in fermenting yeast declined in parallel with viability; however, yeast grown on respiratory substrates maintained near-normal phosphorylation levels at HOCl doses several-fold greater than that required for killing. This overall pattern of cellular response to HOCl differs markedly from that previously reported for bacteria, which appear to be killed by inhibition of plasma membrane proteins involved in energy transduction. The absence of significant loss of function in critical oxidant-sensitive cellular components and retention of ATP-synthesizing capabilities in respiring yeast cells exposed to lethal levels of HOCl suggests that toxicity in this case may arise by programmed cell death. (C) 2003 Elsevier Inc. All rights reserved. [References: 62]
机译:为了确定致死性损伤的位点,探讨了由抑制细胞复制的HOCl水平引起的对酿酒酵母的氧化损伤的性质。对HOCl失活高度敏感的胞质酶和细胞器的功能,包括醛缩酶,3-磷酸甘油醛脱氢酶(GAPDH)和线粒体,仅受酵母暴露于完全抑制菌落的HOCl水平的影响很小编队。膜定位蛋白(包括己糖转运蛋白和PMA1 H + -ATPase)(位于酿酒酵母质膜内的主要质子泵)的功能损失也很小,暴露于细胞外介质的K +泄漏率仅随着暴露而缓慢增加到HOCl含量增加,表明质膜保留了其对离子和代谢物的固有不渗透性。发酵酵母中腺苷酸的磷酸化水平与生存能力平行下降。然而,在呼吸底物上生长的酵母在HOCl剂量下维持接近正常的磷酸化水平,其杀伤剂量要高出几倍。细胞对HOC1反应的总体模式与先前报道的细菌明显不同,细菌似乎被抑制了参与能量转导的质膜蛋白杀死。在暴露于致死水平的HOCl的呼吸酵母细胞中,关键的对氧化剂敏感的细胞组分没有明显的功能丧失和ATP合成能力的保持,表明在这种情况下,毒性可能是由程序性细胞死亡引起的。 (C)2003 Elsevier Inc.保留所有权利。 [参考:62]

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