Rodríguez de Lores Arnaiz G, Reinés A, Herbin T, Peña C
Instituto de Biología Celular y Neurociencias Prof. Eduardo De Robertis, Facultad de Medicina, Universidad de Buenos Aires, Argentina.
Neurochem Int. 1998 Nov;33(5):425-33. doi: 10.1016/s0197-0186(98)00046-1.
Na+,K+-ATPase activity of rat brain synaptosomal membranes was evaluated in the presence of an inhibitory fraction II-E (termed endobain E), isolated by gel filtration and anionic exchange HPLC of a rat brain soluble fraction. We studied endobain E aging, analyzed its inhibitory potency in the absence or presence of ouabain as well as its ability to block high affinity [3H]ouabain binding to cerebral cortex membranes. Similar loss of endobain E activity was observed when samples were stored either dried or in solution. Endobain E fraction inhibited synaptosomal membrane Na+,K+-ATPase activity in a concentration-dependent manner and the slope of the corresponding curve strongly resembled that of ouabain. Assays performed in the presence of endobain E and ouabain indicated that the inhibitory effect was additive or less than additive, depending on their respective concentrations during preincubation and/or incubation. High affinity [3H]ouabain binding to cerebral cortex membranes proved concentration-dependent from 0.10 to 0.50 mg protein per ml; binding inhibition by endobain E was independent of protein concentration within the above range. [3H]ouabain binding inhibition by endobain E was concentration-dependent over a 10-fold range, an effect similar to that found for Na+,K+-ATPase inhibition. The extent of endobain E effect on Na+,K+-ATPase inhibition was much higher (90-100%) than that on [3H]ouabain binding blockade (50%). Findings suggest some type of interaction between endobain E and ouabain inhibitory mechanisms and favour the view that the former behaves as an endogenous ouabain.
在存在通过凝胶过滤和大鼠脑可溶性组分的阴离子交换高效液相色谱法分离得到的抑制性组分II - E(称为内源性哇巴因E)的情况下,评估大鼠脑突触体膜的Na +,K + - ATP酶活性。我们研究了内源性哇巴因E的老化,分析了其在不存在或存在哇巴因时的抑制效力以及其阻断高亲和力[3H]哇巴因与大脑皮层膜结合的能力。当样品干燥或在溶液中储存时,观察到内源性哇巴因E活性有类似的损失。内源性哇巴因E组分以浓度依赖性方式抑制突触体膜Na +,K + - ATP酶活性,并且相应曲线的斜率与哇巴因的斜率非常相似。在内源性哇巴因E和哇巴因存在下进行的测定表明,抑制作用是相加的或小于相加的,这取决于它们在预孵育和/或孵育期间的各自浓度。高亲和力[3H]哇巴因与大脑皮层膜的结合在每毫升0.10至0.50毫克蛋白质范围内呈浓度依赖性;内源性哇巴因E的结合抑制在上述范围内与蛋白质浓度无关。内源性哇巴因E对[3H]哇巴因结合的抑制在10倍范围内呈浓度依赖性,这一效应与Na +,K + - ATP酶抑制的效应相似。内源性哇巴因E对Na +,K + - ATP酶抑制的作用程度(90 - 100%)远高于其对[3H]哇巴因结合阻断的作用程度(50%)。研究结果表明内源性哇巴因E与哇巴因抑制机制之间存在某种类型的相互作用,并支持前者表现为内源性哇巴因的观点。