Guicheney P, Garay R P, Levy-Marchal C, Meyer P
Proc Natl Acad Sci U S A. 1978 Dec;75(12):6285-9. doi: 10.1073/pnas.75.12.6285.
In crude rat cardiac membrane preparations, [3H]dihydroergocryptine (3H-DHE) appears to bind to two classes of sites with limited capacity, differing in their specificities and their affinities. The first class of binding sites interacts preferentially with the postsynaptic alpha-adrenoceptor blocker ARC239, as can be expected for postsynaptic alpha-adrenoceptors. The binding of 3H-DHE to these receptors follows the law of mass action, with a high affinity for 3H-DHE (Kd 25 degrees C = 1.67 +/- 0.37 nM). Postsynaptic saturating levels of 3H-DHE are necessary to occupy the second class of binding sites. These sites exhibit a preferential affinity for presynaptic ligands such as clonidine and yohimbine, as would be expected for presynaptic alpha-adrenergic receptors. This presynaptic binding shows a markedly positive homotropic cooperativity (Hill n = 2.88) with initial and final apparent Kds of 23 and 0.83 nM, respectively. Free energy of interaction between sites is of the order of 2 kcal (8.36 kJ)/mol of sites. These characteristics provide a rational molecular basis for the functional role of presynaptic alpha-adrenoceptors that mediate the inhibition of norepinephrine release from nerve endings.
在粗制大鼠心脏膜制剂中,[3H]二氢麦角隐亭(3H-DHE)似乎与两类容量有限的位点结合,它们的特异性和亲和力不同。第一类结合位点优先与突触后α-肾上腺素能受体阻滞剂ARC239相互作用,这正如突触后α-肾上腺素能受体所预期的那样。3H-DHE与这些受体的结合遵循质量作用定律,对3H-DHE具有高亲和力(25℃时Kd = 1.67±0.37 nM)。3H-DHE的突触后饱和水平是占据第二类结合位点所必需的。这些位点对突触前配体如可乐定和育亨宾表现出优先亲和力,这正如突触前α-肾上腺素能受体所预期的那样。这种突触前结合表现出明显的正同促协同性(希尔系数n = 2.88),初始和最终表观Kd分别为23和0.83 nM。位点之间的相互作用自由能约为2千卡(8.36千焦)/摩尔位点。这些特性为介导去甲肾上腺素从神经末梢释放受抑制的突触前α-肾上腺素能受体的功能作用提供了合理的分子基础。