Katz A, Bental M, Degani H, Avron M
Department of Biochemistry, The Weizmann Institute of Science, Rehovot 76100, Israel.
Plant Physiol. 1991 May;96(1):110-5. doi: 10.1104/pp.96.1.110.
Na(+)/H(+) exchange activity in whole cells of the halotolerant alga Dunaliella salina can be elicited by intracellular acidification due to addition of weak acids at appropriate external pH. The changes in both intracellular pH and Na(+) were followed. Following a mild intracellular acidification, intracellular Na(+) content increased dramatically and then decreased. We interpret the phase of Na(+) influx as due to the activation of the plasma membrane Na(+)/H(+) antiporter and the phase of Na(+) efflux as due to an active Na(+) extrusion process. The following observations are in agreement with this interpretation: (a) the Na(+) influx phase was sensitive to Li(+), which is an inhibitor of the Na(+)/H(+) antiporter, did not require energy, and was insensitive to vanadate; (b) the Na(+) efflux phase is energy-dependent and sensitive to the plasma membrane ATPase inhibitor, vanadate. Following intracellular acidification, a drastic decrease in the intracellular ATP content is observed that is reversed when the cells regain their neutral pH value. We suggest that the intracellular acidification-induced change in the internal Na(+) concentration is due to a combination of Na(+) uptake via the Na(+)/H(+) antiporter and an active, ATPase-dependent, Na(+) extrusion. The Na(+)/H(+) antiporter seems, therefore, to play a principal role in internal pH regulation in Dunaliella.
在耐盐藻类杜氏盐藻的全细胞中,通过在合适的外部pH值下添加弱酸导致细胞内酸化,可以引发Na(+)/H(+)交换活性。同时监测细胞内pH值和Na(+)的变化。在轻度细胞内酸化后,细胞内Na(+)含量急剧增加,然后下降。我们将Na(+)流入阶段解释为由于质膜Na(+)/H(+)反向转运蛋白的激活,而Na(+)流出阶段解释为由于活跃的Na(+)外排过程。以下观察结果与该解释一致:(a) Na(+)流入阶段对Li(+)敏感,Li(+)是Na(+)/H(+)反向转运蛋白的抑制剂,不需要能量,且对钒酸盐不敏感;(b) Na(+)流出阶段依赖能量,且对质膜ATP酶抑制剂钒酸盐敏感。细胞内酸化后,观察到细胞内ATP含量急剧下降,当细胞恢复中性pH值时,这种下降会逆转。我们认为,细胞内酸化引起的细胞内Na(+)浓度变化是由于通过Na(+)/H(+)反向转运蛋白摄取Na(+)以及活跃的、依赖ATP酶的Na(+)外排共同作用的结果。因此,Na(+)/H(+)反向转运蛋白似乎在杜氏盐藻的细胞内pH调节中起主要作用。