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首页> 外文期刊>The Journal of General and Applied Microbiology >EFFLUX OF SODIUM IONS BY A NA+/H+-ANTIPORTER DURING SALT STRESS IN THE SALT-TOLERANT YEAST ZYGOSACCHAROMYCES ROUXII
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EFFLUX OF SODIUM IONS BY A NA+/H+-ANTIPORTER DURING SALT STRESS IN THE SALT-TOLERANT YEAST ZYGOSACCHAROMYCES ROUXII

机译:Na + / H +-拮抗剂在耐盐酵母酵母中的盐胁迫过程中钠离子的外流

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摘要

The flux of Na+, Cl- and H+ ions and the accumulation of glycerol in cells of a salt-tolerant yeast, Zygosaccharomyces rouxii, was examined during the initial stages of salt stress. Although the intracellular accumulation of glycerol that was required for osmoregulation began immediately after exposure of the cells to salt stress, rapid influx of Na+ and Cl- ions into cells also occurred. These ions were subsequently extruded from the cells and the intracellular levels of both ions were maintained much lower than those in the external medium. Furthermore, a rapid efflux of protons was induced by activation of the plasma membrane ATPase (PM-ATPase) immediately after the start of salt stress and then the influx (re-influx) of protons into cells occurred. The addition of a specific inhibitor of PM-ATPase, diethylstilbestrol (DES), and of inhibitors of the energy-generating system, namely sodium azide, antimycin A and dinitrophenol, inhibited the intracellular accumulation of glycerol and activation of PM-ATPase, and they retarded the rapid efflux of protons and the extrusion of Na+ and Cl- ions, The re-influx of protons into cells was inhibited by amphotericin B, probably because of the destruction of the structure of the plasma membrane, In mutants in which rapid activation of PM-ATPase was not observed immediately after the start of salt stress, the efflux of protons was markedly retarded and extrusion of Na+ and Cl- ions was also suppressed during salt stress, Amiloride, an inhibitor of the Na+/H+-antiporter, inhibited the re-influx of protons and the efflux of Na+ and Cl- ions, but this inhibitor did not inhibit the accumulation of glycerol, activation of PM-ATPase or the rapid efflux of protons. These results suggest that the Na+/H+-antiporter may play a significant role in extrusion of the ions that enter cells during the initial stages of salt stress.
机译:在盐胁迫的初始阶段,研究了耐盐酵母鲁氏酵母(Zygosaccharomyces rouxii)细胞中Na +,Cl-和H +离子的通量以及甘油的积累。尽管渗透调节所需的甘油在细胞内的积累是在细胞暴露于盐胁迫后立即开始的,但Na +和Cl-离子也迅速流入细胞。这些离子随后从细胞中挤出,并且两种离子的细胞内水平都保持在比外部培养基中低得多的水平。此外,在盐胁迫开始后立即通过质膜ATPase(PM-ATPase)的激活来诱导质子的快速外流,然后质子涌入(再流入)细胞。添加特定的PM-ATPase抑制剂,己烯雌酚(DES)和能量生成系统的抑制剂,即叠氮化钠,抗霉素A和二硝基苯酚,可抑制甘油在细胞内的积累和PM-ATPase的活化,阻碍了质子的快速外流以及Na +和Cl-离子的挤出,两性霉素B抑制了质子重新流入细胞,这可能是由于质膜结构的破坏所致。盐胁迫开始后未立即观察到PM-ATPase,在盐胁迫期间,质子的流出明显受阻,Na +和Cl-离子的挤出也受到抑制,Na + / H +-反向转运蛋白抑制剂Amiloride抑制了Na- / H +-反向转运。质子的再次流入以及Na +和Cl-离子的流出,但该抑制剂并未抑制甘油的积累,PM-ATPase的活化或质子的快速流出。这些结果表明,Na + / H +-反向转运蛋白可能在盐胁迫初期进入细胞的离子的挤出中起重要作用。

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