首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >H2O2 induces rapid biophysical and permeability changes in the plasma membrane of Saccharomyces cerevisiae.
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H2O2 induces rapid biophysical and permeability changes in the plasma membrane of Saccharomyces cerevisiae.

机译:H2O2在酿酒酵母的质膜中诱导快速的生物物理和通透性变化。

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摘要

In Saccharomyces cerevisiae, the diffusion rate of hydrogen peroxide (H2O2) through the plasma membrane decreases during adaptation to H2O2 by means of a mechanism that is still unknown. Here, evidence is presented that during adaptation to H2O2 the anisotropy of the plasma membrane increases. Adaptation to H2O2 was studied at several times (15min up to 90min) by applying the steady-state H2O2 delivery model. For wild-type cells, the steady-state fluorescence anisotropy increased after 30min, or 60min, when using 2-(9-anthroyloxy) stearic acid (2-AS), or diphenylhexatriene (DPH) membrane probe, respectively. Moreover, a 40% decrease in plasma membrane permeability to H2O2 was observed at 15min with a concomitant two-fold increase in catalase activity. Disruption of the ergosterol pathway, by knocking out either ERG3 or ERG6, prevents the changes in anisotropy during H2O2 adaptation. H2O2 diffusion through the plasma membrane in S. cerevisiae cells is not mediated by aquaporins since the H2O2 permeability constant is not altered in the presence of the aquaporin inhibitor mercuric chloride. Altogether, these results indicate that the regulation of the plasma membrane permeability towards H2O2 is mediated by modulation of the biophysical properties of the plasma membrane.
机译:在酿酒酵母中,过氧化氢(H 2 O 2)通过质膜的扩散速率在对H 2 O 2的适应过程中通过未知的机制而降低。在这里,有证据表明,在适应H2O2的过程中,质膜的各向异性增加了。通过应用稳态的H2O2输送模型,多次(15min至90min)研究了对H2O2的适应性。对于野生型细胞,当分别使用2-(9-蒽氧基)硬脂酸(2-AS)或二苯基己三烯(DPH)膜探针时,稳态荧光各向异性在30分钟或60分钟后增加。此外,在15分钟时观察到质膜对H2O2的渗透性下降40%,同时过氧化氢酶活性增加了两倍。通过敲除ERG3或ERG6来中断麦角固醇途径可防止H2O2适应过程中各向异性的变化。由于在水通道蛋白抑制剂氯化汞的存在下,H2O2的渗透常数不变,所以水通道蛋白不会介导H2O2通过质膜在酿酒酵母细胞中的扩散。总而言之,这些结果表明质膜对H 2 O 2渗透性的调节是通过质膜的生物物理性质的调节来介导的。

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