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新分离出的嗜碱芽孢杆菌中的钠/质子反向转运系统

The sodium/proton antiport system in a newly isolated alkalophilic Bacillus sp.

作者信息

Kitada M, Onda K, Horikoshi K

机构信息

Riken Institute, Saitama, Japan.

出版信息

J Bacteriol. 1989 Apr;171(4):1879-84. doi: 10.1128/jb.171.4.1879-1884.1989.

Abstract

The pH homeostasis and the sodium/proton antiport system have been studied in the newly isolated alkalophilic Bacillus sp. strain N-6, which could grow on media in a pH range from 7 to 10, and in its nonalkalophilic mutant. After a quick shift in external pH from 8 to 10 by the addition of Na2CO3, the delta pH (inside acid) in the cells of strain N-6 was immediately established, and the pH homeostatic state was maintained for more than 20 min in an alkaline environment. However, under the same conditions, the pH homeostasis was not observed in the cells of nonalkalophilic mutant, and the cytoplasmic pH immediately rose to pH 10. On the other hand, the results of the rapid acidification from pH 9 to 7 showed that the internal pH was maintained as more basic than the external pH in a neutral medium in both strains. The Na+/H+ antiport system has been characterized by either the effect of Na+ on delta pH formation or 22Na+ efflux in Na+-loaded right-side-out membrane vesicles of strain N-6. Na+- or Li+-loaded vesicles exhibited a reversed delta pH (inside acid) after the addition of electron donors (ascorbate plus tetramethyl-p-phenylenediamine) at both pH 7 and 9, whereas choline-loaded vesicles generated delta pHs of the conventional orientation (inside alkaline). 22Na+ was actively extruded from 22Na+-loaded vesicles whose potential was negative at pH 7 and 9. The inclusion of carbonyl cyanide m-chlorophenylhydrazone inhibited 22Na+ efflux in the presence of electron donors. These results indicate that the Na+/H+ antiport system in this strain operates electrogenically over a range of external pHs from 7 to 10 and plays a role in pH homeostasis at the alkaline pH range. The pH homeostasis at neutral ph was studied in more detail. K+ -depleted cells showed no delta pH (acid out) in the neutral conditions in the absence of K+, whereas these cells generated a delta pH if K+ was present in the medium. This increase of internal pH was accompanied by K+ uptake from the medium. These results suggest that electrogenic K+ entry allows extrusion of H+ from cells by the primary proton pump at neutral pH.

摘要

对新分离出的嗜碱芽孢杆菌N-6菌株及其非嗜碱突变体的pH稳态和钠/质子反向转运系统进行了研究。该嗜碱芽孢杆菌N-6菌株能够在pH值为7至10的培养基上生长。在通过添加Na2CO3使外部pH值从8快速转变为10后,N-6菌株细胞内立即形成了ΔpH(内部呈酸性),并且在碱性环境中pH稳态维持了20多分钟。然而,在相同条件下,非嗜碱突变体的细胞中未观察到pH稳态,其细胞质pH值立即升至10。另一方面,从pH 9快速酸化至pH 7的结果表明,在中性培养基中,两种菌株的内部pH值均维持在比外部pH值更碱性的水平。通过Na+对N-6菌株加载Na+的外翻膜囊泡中ΔpH形成的影响或22Na+外流来表征Na+/H+反向转运系统。在pH 7和9时,加载Na+或Li+的囊泡在添加电子供体(抗坏血酸加四甲基对苯二胺)后呈现反向的ΔpH(内部呈酸性),而加载胆碱的囊泡产生常规方向的ΔpH(内部呈碱性)。22Na+从加载22Na+的囊泡中被主动排出,这些囊泡在pH 7和9时电位为负。羰基氰化物间氯苯腙的加入在有电子供体存在的情况下抑制了22Na+外流。这些结果表明,该菌株中的Na+/H+反向转运系统在外部pH值为7至10的范围内以电生方式运行,并在碱性pH范围内的pH稳态中发挥作用。对中性pH下的pH稳态进行了更详细的研究。在无K+的中性条件下,K+耗尽的细胞未显示出ΔpH(酸外流),而如果培养基中存在K+,这些细胞则会产生ΔpH。内部pH值的这种升高伴随着从培养基中摄取K+。这些结果表明,在中性pH下,电生性的K+内流允许通过初级质子泵将H+从细胞中排出。

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