Kettner Carsten, Obermeyer Gerhard, Bertl Adam
Botanisches Institut I, Universität Karlsruhe (TH), Kaiserstrasse 12, 76128 Karlsruhe, Germany.
FEBS Lett. 2003 Jan 30;535(1-3):119-24. doi: 10.1016/s0014-5793(02)03886-3.
The activity of the vacuolar H(+)-ATPase has been characterized in isolated vacuoles of the yeast Saccharomyces cerevisiae by means of the patch-clamp technique. With cytosolic calcium at virtually zero (<10(-9) M), Mg-ATP induced a transient, bafilomycin A(1)-sensitive current corresponding to the flow of positive charges from the cytoplasmic surface to the vacuolar lumen. The Mg-ATP-dependent current reached its maximum amplitude (30+/-8 mA m(-2) with 5 mM Mg-ATP, n=34) within 15-20 s and declined slowly over a period of about 15-20 min even in the continuous presence of Mg-ATP. This decline of pumping activity was independent of the cytosolic KCl concentration, suggesting an inhibitory mechanism different from the high salt-induced dissociation of V(0) and V(1) reported for the V-ATPase of plants and fungi. Cytosolic ADP was found to modulate the pump activity since Mg-ATP-induced pump current was smaller if monitored in the presence of 5 mM ADP and addition of 5 mM ADP in the presence of 5 mM Mg-ATP reduced the pump current by more than 50%. Furthermore, reduction of the cytosolic ADP concentration by the ATP-regenerating system creatine phosphate/creatine kinase partially relieved the endogenous inhibition of the V-ATPase, confirming that interaction of cytosolic ADP with the V-ATPase is the reason for the transient nature of the pump current in yeast vacuoles.
利用膜片钳技术,对酿酒酵母分离出的液泡中液泡H(+)-ATP酶的活性进行了表征。在胞质钙浓度几乎为零(<10(-9) M)的情况下,Mg-ATP诱导出一种短暂的、对巴弗洛霉素A(1)敏感的电流,该电流对应于正电荷从细胞质表面流向液泡腔。Mg-ATP依赖性电流在15 - 20秒内达到最大幅度(5 mM Mg-ATP时为30±8 mA m(-2),n = 34),即使在持续存在Mg-ATP的情况下,也会在约15 - 20分钟内缓慢下降。这种泵浦活性的下降与胞质KCl浓度无关,这表明其抑制机制不同于报道的植物和真菌V-ATP酶因高盐诱导的V(0)和V(1)解离。发现胞质ADP可调节泵浦活性,因为在5 mM ADP存在下监测时,Mg-ATP诱导的泵浦电流较小,并且在5 mM Mg-ATP存在下添加5 mM ADP可使泵浦电流降低超过50%。此外,通过ATP再生系统磷酸肌酸/肌酸激酶降低胞质ADP浓度可部分缓解V-ATP酶的内源性抑制,这证实了胞质ADP与V-ATP酶的相互作用是酵母液泡中泵浦电流具有短暂性的原因。