Krogsgaard-Larsen P, Snowman A, Lummis S C, Olsen R W
J Neurochem. 1981 Aug;37(2):401-9. doi: 10.1111/j.1471-4159.1981.tb00469.x.
The binding of radioactive piperidine-4-sulphonic acid ([3H]P4S) to thoroughly washed, frozen, and thawed membranes isolated from cow and rat brains has been studied. Quantitative computer analysis of the binding curves for four regions of bovine brain revealed the general presence of two binding sites. In these brain regions less satisfactory computer fits were obtained for receptor models showing one or three binding sites or negative cooperativity. With the use of Tris-citrate buffer at 0 degree C the two affinity classes for P4S in bovine cortex membranes revealed the following binding parameters: KD = 17 +/- 7 nM (Bmax = 0.15 +/- 0.07 pmol/mg protein) and KD = 237 +/- 100 nM (Bmax = 0.80 +/- 0.20 pmol/mg protein). Heterogeneity was also observed for association and dissociation rates of [3H]P4S. The slow binding component (kon = 5.6 X 10(7) or 8.8 X 10(7) M-1 min-1, koff = 0.83 min-1, and KD = 14.7 or 9.4 nM, determined by two different methods in phosphate buffer containing postassium chloride) corresponds to the high-affinity component of the equilibrium binding curve (KD = 11 nM, Bmax = 0.12 pmol/mg protein in the same buffer system). The association and dissociation rates for the subpopulation of rapidly of dissociating sites, apparently corresponding to the low-affinity sites, were too rapid to be measured accurately. The binding of [3H]P4S appears to involve the same two populations of sites with Bmax values similar to those for [3H]GABA binding to the same tissue, although the kinetic parameters for the two ligands are somewhat different. Furthermore, comparative studies on the inhibition of [3H]P4S and [3H]GABA binding by various GABA analogues, strongly suggest that P4S binds to the GABA receptors. The different effects of P4S and GABA on benzodiazepine binding are discussed.
对从牛脑和大鼠脑中分离出的经过彻底洗涤、冷冻和解冻的膜,研究了放射性哌啶 - 4 - 磺酸([³H]P4S)的结合情况。对牛脑四个区域的结合曲线进行定量计算机分析,发现普遍存在两个结合位点。在这些脑区,对于显示一个或三个结合位点或负协同性的受体模型,计算机拟合效果不太理想。在0℃使用柠檬酸 - 三羟甲基氨基甲烷缓冲液时,牛皮质膜中P4S的两种亲和力类别显示出以下结合参数:KD = 17±7 nM(Bmax = 0.15±0.07 pmol/mg蛋白质)和KD = 237±100 nM(Bmax = 0.80±0.20 pmol/mg蛋白质)。还观察到[³H]P4S的结合和解离速率存在异质性。慢结合成分(在含氯化钾的磷酸盐缓冲液中通过两种不同方法测定,kon = 5.6×10⁷或8.8×10⁷ M⁻¹ min⁻¹,koff = 0.83 min⁻¹,KD = 十四点七或九点四 nM)对应于平衡结合曲线的高亲和力成分(在相同缓冲系统中KD = 11 nM,Bmax = 0.12 pmol/mg蛋白质)。快速解离位点亚群的结合和解离速率显然对应于低亲和力位点,太快而无法准确测量。[³H]P4S的结合似乎涉及相同的两个位点群体,其Bmax值与[³H]GABA与同一组织结合时的Bmax值相似,尽管两种配体的动力学参数有所不同。此外,对各种GABA类似物对[³H]P4S和[³H]GABA结合的抑制作用的比较研究强烈表明,P4S与GABA受体结合。讨论了P4S和GABA对苯二氮䓬结合的不同影响。