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Potassium extrusion by the moderately halophilic and alkaliphilic methanogen methanolobus taylorii GS-16 and homeostasis of cytosolic pH.

机译:钾盐通过适度嗜盐和嗜碱的产甲烷甲烷菌taylorii GS-16的挤压和胞质pH的稳态。

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摘要

Methanolobus taylorii GS-16, a moderately halophilic and alkaliphilic methanogen, grows over a wide pH range, from 6.8 to 9.0. Cells suspended in medium with a pH above 8.2 reversed their transmembrane pH gradient (delta pH), making their cytosol more acidic than the medium. The decreased energy in the proton motive force due to the reversed delta pH was partly compensated by an increased electric membrane potential (delta psi). The cytosolic acidification by M. taylorii at alkaline pH values was accompanied by K+ extrusion. The cytosolic K+ concentration was 110 mM in cells suspended at pH 8.7, but it was 320 mM in cells suspended at neutral pH values. High external K+ concentrations (210 mM or higher) inhibited the growth of M. taylorii at alkaline pH values, perhaps by preventing K+ extrusion. Cells suspended at pH 8.5 and 300 mM external K+ failed to acidify their cytosol. The key observation indicative of the involvement of K+ transport in cytosolic acidification was that valinomycin (0.8 microM), a K+ uniporter, inhibited the growth of M. taylorii only at alkaline pH values. Experiments with resting cells indicated that at alkaline pH values valinomycin uncoupled catabolic reactions from ATP synthesis. Thus, K+/H+ antiport activity was proposed to account for the K+ extrusion and the uncoupling effect of valinomycin at alkaline pH values. Such antiport activity was demonstrated by the sharp drop in pH of the bulk medium of the cell suspension upon the addition of 0.1 M KCl. The antiporter appeared to be active only at alkaline pH values, which was in accordance with a possible role in pH homeostasis by M. taylorii growing at alkaline pH values.
机译:泰勒甲醇单胞菌GS-16是一种适度嗜盐和嗜碱的产甲烷菌,可在6.8至9.0的宽pH范围内生长。悬浮在pH值高于8.2的培养基中的细胞会逆转其跨膜pH梯度(δpH),使它们的细胞质比培养基更酸性。质子原动力因反向pH值降低而降低的能量部分被膜电势增加(Δpsi)所补偿。在碱性pH值下由泰勒莫氏菌进行的胞质酸化伴随着K +挤出。在悬浮于pH 8.7的细胞中,胞浆K +浓度为110 mM,但是悬浮于中性pH值的细胞中为320 mM。较高的外部K +浓度(210 mM或更高)在碱性pH值下可能会抑制taylorii菌的生长,这可能是通过阻止K +挤出来实现的。悬浮于pH 8.5和300 mM外部K +的细胞无法酸化其细胞质。指示K +转运参与胞质酸化的关键观察结果是,缬氨酸新霉素(0.8 microM)是K +单向转运蛋白,仅在碱性pH值下才抑制泰勒霉菌的生长。静息细胞的实验表明,在碱性pH值下,缬霉素能使ATP合成产生的分解代谢反应解偶联。因此,提出了K + / H +的反向转运活性,以解释K +的挤出和缬氨霉素在碱性pH值下的解偶联作用。通过加入0.1M KCl,细胞悬液的总体培养基的pH急剧下降证明了这种反端口活性。反向转运蛋白似乎仅在碱性pH值下才有活性,这与泰勒莫氏杆菌在碱性pH值下生长对pH稳态的可能作用相一致。

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    Ni, S; Boone, J E; Boone, D R;

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  • 年度 1994
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