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呼吸性钠离子泵在溶藻弧菌生物能量学中的作用。

Roles of the respiratory Na+ pump in bioenergetics of Vibrio alginolyticus.

作者信息

Tokuda H, Asano M, Shimamura Y, Unemoto T, Sugiyama S, Imae Y

机构信息

Faculty of Pharmaceutical Sciences, Chiba University.

出版信息

J Biochem. 1988 Apr;103(4):650-5. doi: 10.1093/oxfordjournals.jbchem.a122323.

Abstract

Bioenergetic characteristics of Na+ pump-defective mutants of a marine bacterium Vibrio alginolyticus were compared with those of the wild type and revertant. Generation of membrane potential and motility at pH 8.5 in the mutants were completely inhibited by a proton conductor, carbonylcyanide m-chlorophenylhydrazone, whereas those in the wild type or revertant were resistant to the inhibitor. Motility and amino acid transport were driven by the electrochemical potential of Na+ not only in the wild type or revertant but also in the mutants. In the absence of the proton conductor, motility and amino acid transport of the mutants did not significantly differ from those of the wild type or revertant even at pH 8.5, where the Na+ pump has maximum activity. Therefore, the electrochemical potential of Na+ in the mutants seemed to be maintained at a normal level by a respiration-dependent H+ pump and Na+/H+ antiporter. On the other hand, growth of the mutants became defective as the medium pH increased, especially on minimal medium. These results indicate that the Na+ pump is an important energy-generating mechanism when nutrients are limited at alkaline pH.

摘要

将溶藻弧菌(Vibrio alginolyticus)的钠泵缺陷型突变体的生物能量学特征与野生型和回复突变体进行了比较。在突变体中,质子导体羰基氰化物间氯苯腙完全抑制了pH 8.5时膜电位的产生和运动性,而野生型或回复突变体对该抑制剂具有抗性。不仅在野生型或回复突变体中,而且在突变体中,运动性和氨基酸转运均由Na⁺的电化学势驱动。在没有质子导体的情况下,即使在Na⁺泵具有最大活性的pH 8.5时,突变体的运动性和氨基酸转运与野生型或回复突变体也没有显著差异。因此,突变体中Na⁺的电化学势似乎通过呼吸依赖性H⁺泵和Na⁺/H⁺反向转运蛋白维持在正常水平。另一方面,随着培养基pH升高,尤其是在基本培养基上,突变体的生长出现缺陷。这些结果表明,当碱性pH条件下营养物质有限时,钠泵是一种重要的能量产生机制。

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