Mendonça N N, Masui D C, McNamara J C, Leone F A, Furriel R P M
Departamento de Química, Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto, Universidade de São Paulo. Ribeirão Preto 14040-901, SP, Brazil.
Comp Biochem Physiol A Mol Integr Physiol. 2007 Apr;146(4):534-43. doi: 10.1016/j.cbpa.2006.01.019. Epub 2006 Mar 10.
The kinetic properties of a microsomal gill (Na+,K+)-ATPase from the freshwater shrimp, Macrobrachium olfersii, acclimated to 21 per thousand salinity for 10 days were investigated using the substrate p-nitrophenylphosphate. The enzyme hydrolyzed this substrate obeying cooperative kinetics at a rate of 123.6+/-4.9 U mg-1 and K0.5=1.31+/-0.05 mmol L-1. Stimulation of K+-phosphatase activity by magnesium (Vmax=125.3+/-7.5 U mg-1; K0.5=2.09+/-0.06 mmol L-1), potassium (Vmax=134.2+/-6.7 U mg-1; K0.5=1.33+/-0.06 mmol L-1) and ammonium ions (Vmax=130.1+/-5.9 U mg-1; K0.5=11.4+/-0.5 mmol L-1) was also cooperative. While orthovanadate abolished p-nitrophenylphosphatase activity, ouabain inhibition reached 80% (KI=304.9+/-18.3 micromol L-1). The kinetic parameters estimated differ significantly from those for freshwater-acclimated shrimps, suggesting expression of different isoenzymes during salinity adaptation. Despite the approximately 2-fold reduction in K+-phosphatase specific activity, Western blotting analysis revealed similar alpha-subunit expression in gill tissue from shrimps acclimated to 21 per thousand salinity or fresh water, although expression of phosphate-hydrolyzing enzymes other than (Na+,K+)-ATPase was stimulated by high salinity acclimation.
利用对硝基苯磷酸酯作为底物,研究了适应21‰盐度10天的淡水虾罗氏沼虾微粒体鳃(Na +,K +)-ATP酶的动力学特性。该酶以123.6±4.9 U mg-1的速率水解此底物,遵循协同动力学,K0.5 = 1.31±0.05 mmol L-1。镁(Vmax = 125.3±7.5 U mg-1;K0.5 = 2.09±0.06 mmol L-1)、钾(Vmax = 134.2±6.7 U mg-1;K0.5 = 1.33±0.06 mmol L-1)和铵离子(Vmax = 130.1±5.9 U mg-1;K0.5 = 11.4±0.5 mmol L-1)对K + -磷酸酶活性的刺激也是协同的。虽然原钒酸盐消除了对硝基苯磷酸酶的活性,但哇巴因抑制率达到80%(KI = 304.9±18.3 μmol L-1)。所估计的动力学参数与适应淡水的虾的参数有显著差异,表明在盐度适应过程中表达了不同的同工酶。尽管K + -磷酸酶比活性大约降低了2倍,但蛋白质印迹分析显示,适应21‰盐度或淡水的虾鳃组织中α亚基的表达相似,不过除了(Na +,K +)-ATP酶之外的磷酸水解酶的表达受到高盐度适应的刺激。