Fricke U
Basic Res Cardiol. 1984;79 Suppl:119-27. doi: 10.1007/978-3-642-72376-6_16.
3H-ouabain binding to guinea pig heart NaK-ATPase resulted in two different cardiac glycoside binding sites: A high affinity, low capacity binding was obtained at a KD = 2.6 X 10(-7) mol/l (about 40% of the binding sites) whereas a low affinity, high capacity binding was established at a KD = 1.3 X 10(-6) mol/l (about 60% of the binding sites). Similar results were obtained when studying the effect of increasing Na+-concentrations on ouabain binding: again two distinct processes involved in the Na+/ouabain interaction could be demonstrated. Whereas one ouabain binding process was activated at rather low Na+-concentrations (K0.5 = 4.5 mmol/l), the other ouabain binding process was predominant at high Na+-concentrations only (K0.5 = 69 mmol/l). Comparing these data with the ouabain action on contractile force and with NaK-ATPase activity in guinea pig heart, the high affinity binding of ouabain seems to correlate with the inotropic action, whereas the low affinity ouabain binding is more related to NaK-ATPase inhibition. To further discriminate the two cardiac glycoside binding sites operative in guinea pig heart muscle, erythrosin B, shown to be an inhibitor of the high affinity ouabain binding in this preparation, was applied to isolated guinea pig left atria in the presence of increasing ouabain concentrations. There was no change in the ouabain induced inotropy or toxicity by erythrosin B. These results could indicate that the low affinity ouabain binding is responsible for both inotropic and toxic actions in guinea pig heart. However, the functional significance of the high affinity ouabain binding would then remain obscure.(ABSTRACT TRUNCATED AT 250 WORDS)
3H-哇巴因与豚鼠心脏钠钾-ATP酶结合产生了两种不同的强心苷结合位点:在KD = 2.6×10⁻⁷mol/L时获得高亲和力、低容量结合(约占结合位点的40%),而在KD = 1.3×10⁻⁶mol/L时建立低亲和力、高容量结合(约占结合位点的60%)。在研究增加Na⁺浓度对哇巴因结合的影响时也获得了类似结果:同样可以证明Na⁺/哇巴因相互作用涉及两个不同过程。一个哇巴因结合过程在相当低的Na⁺浓度下被激活(K0.5 = 4.5mmol/L),而另一个哇巴因结合过程仅在高Na⁺浓度下占主导(K0.5 = 69mmol/L)。将这些数据与哇巴因对收缩力的作用以及豚鼠心脏中的钠钾-ATP酶活性进行比较,哇巴因的高亲和力结合似乎与变力作用相关,而低亲和力哇巴因结合与钠钾-ATP酶抑制更相关。为了进一步区分豚鼠心肌中起作用的两个强心苷结合位点,在存在递增哇巴因浓度的情况下,将已证明是该制剂中高亲和力哇巴因结合抑制剂的赤藓红B应用于分离的豚鼠左心房。赤藓红B对哇巴因诱导的变力作用或毒性没有影响。这些结果可能表明低亲和力哇巴因结合负责豚鼠心脏中的变力和毒性作用。然而,高亲和力哇巴因结合的功能意义仍将不明。(摘要截断于250字)