Haque Mohammad Mahfuzul, Manzoor Nikhat, Khan Luqman A, Basir Seemi Farhat
Enzyme Kinetics and Molecular Physiology Lab, Department of Biosciences, Jamia Millia Islamia, New Delhi 110025, India.
Indian J Exp Biol. 2005 Oct;43(10):873-9.
ATP hydrolysis by plasma membrane H+-ATPase from Candida albicans has been investigated in presence of nitric oxide and various nutrients (sugars and amino acids). Sodium nitroprusside (SNP) was used as nitric oxide donor. It was found that ATP concentration decreased in SNP treated cells which was more in presence of sugars like glucose, xylose and 2-deoxy-D-glucose and amino acids as compared to their respective controls. The activity of H+-ATPase from plasma membrane decreased by 70 % in SNP treated cells. Both in vivo and in vitro treatments of SNP showed almost similar effects of decrease in ATPase activity. Effect of SNP was more pronounced in presence of nutrients. Interestingly, it was observed that vanadate did not show any independent effect in presence of nitric oxide. Several workers have reported similar type of results with other P-type ATPases. For the first time, it was observed in the present study that in presence of nitric oxide, H+-ATPase activity decreased like other P-type ATPases. Our study indicated that NO had a significant effect on ATP synthesis and activity of H+- ATPase. In the presence of NO, the ATP concentration was decreased indicating it affected mitochondrial electron transport chain. It may be concluded that NO, not only affects (inhibit) mitochondrial electron transport chain but also interferes with H+- ATPase of plasma membrane by changing its conformation resulting in decreased activity.
在一氧化氮和各种营养物质(糖类和氨基酸)存在的情况下,对白色念珠菌质膜H⁺-ATP酶的ATP水解作用进行了研究。硝普钠(SNP)用作一氧化氮供体。结果发现,经SNP处理的细胞中ATP浓度降低,与各自的对照相比,在葡萄糖、木糖和2-脱氧-D-葡萄糖等糖类以及氨基酸存在时降低得更多。质膜H⁺-ATP酶的活性在经SNP处理的细胞中降低了70%。SNP的体内和体外处理均显示出ATP酶活性降低的几乎相似的效果。在营养物质存在时,SNP的作用更为明显。有趣的是,观察到在一氧化氮存在的情况下钒酸盐没有显示出任何独立作用。其他一些研究人员报道了其他P型ATP酶有类似类型的结果。在本研究中首次观察到,在一氧化氮存在的情况下,H⁺-ATP酶活性像其他P型ATP酶一样降低。我们的研究表明,NO对ATP合成和H⁺-ATP酶活性有显著影响。在NO存在的情况下,ATP浓度降低,表明它影响线粒体电子传递链。可以得出结论,NO不仅影响(抑制)线粒体电子传递链,而且通过改变其构象干扰质膜的H⁺-ATP酶,导致活性降低。