Shafaee N, Houng M, Truong A, Viseshakul N, Figl A, Sandhu S, Forsayeth J R, Dwoskin L P, Crooks P A, Cohen B N
Division of Biomedical Sciences, University of California, Riverside, California, CA 92521-0121, USA.
Br J Pharmacol. 1999 Nov;128(6):1291-9. doi: 10.1038/sj.bjp.0702900.
1 We studied the pharmacological properties of native rat brain and heterologously expressed rat alpha4beta2 nicotinic receptors immunoprecipitated onto a fixed substrate with the anti-alpha4 antibody mAb 299. 2 Immunodepletion with the anti-beta2 antibody mAb 270 showed that 89% of the mAb-299-precipitated rat brain receptors contained beta2. 3 The association and dissociation rate constants for 30 pM +/-[3H]-epibatidine binding to alpha4beta2 receptors expressed in oocytes were 0.02+/-0.01 and 0.03+/-0.01 min-1 (+/-standard error, degrees of freedom=7 - 8) at 20 - 23 degrees C. 4 The Hill coefficients for +/-[3H]epibatidine binding to the native brain, alpha4beta2 receptors expressed in oocytes, and alpha4beta2 receptors expressed in CV-1 cells (using recombinant adenovirus) were 0.69 - 0.70 suggesting a heterogeneous receptor population. Fits of the +/-[3H]-epibatidine concentration-binding data to a two-site model gave KD s of 8 - 30 and 560 - 1,200 pM. The high-affinity sites comprised 73 - 74% of the native brain and oocyte alpha4beta2 receptor population, 85% of the CV-1 alpha4beta2 receptor population. 5 The expression of rat alpha4beta2 receptors in CV-1 cells using vaccinia viral infection-transfection resulted in a more homogeneous receptor population (Hill coefficient of 1. 0+/-0.2). Fits of the +/-[3H]-epibatidine binding data to a single-site model gave a KD of 40+/-3 pM. 6 DHbetaE (IC50=260-470 nM) and the novel nicotine analogue NDNI (IC50=7-10 microM) inhibited 30 pM+/-[3H]-epibatidine binding to the native brain and heterologously expressed alpha4beta2 receptors equally well. 7 The results show that alpha4beta2-containing nicotinic receptors in the rat brain and heterologously expressed rat alpha4beta2 receptors have similar affinities for +/-[3H]-epibatidine, DHbetaE, and NDNI.
我们研究了用抗α4抗体mAb 299免疫沉淀到固定底物上的天然大鼠脑和异源表达的大鼠α4β2烟碱型受体的药理学特性。
用抗β2抗体mAb 270进行免疫耗竭表明,mAb - 299沉淀的大鼠脑受体中有89%含有β2。
在20 - 23摄氏度下,30 pM ± [3H] - 埃博霉素与卵母细胞中表达的α4β2受体结合的缔合和解离速率常数分别为0.02 ± 0.01和0.03 ± 0.01 min-1(±标准误差,自由度 = 7 - 8)。
± [3H]埃博霉素与天然脑、卵母细胞中表达的α4β2受体以及CV - 1细胞中表达的α4β2受体(使用重组腺病毒)结合的希尔系数为0.69 - 0.70,表明受体群体具有异质性。将± [3H] - 埃博霉素浓度 - 结合数据拟合到双位点模型得到的KD值为8 - 30和560 - 1200 pM。高亲和力位点占天然脑和卵母细胞α4β2受体群体的73 - 74%,CV - 1 α4β2受体群体的85%。
使用痘苗病毒感染 - 转染在CV - 1细胞中表达大鼠α4β2受体导致受体群体更均匀(希尔系数为1.0 ± 0.2)。将± [3H] - 埃博霉素结合数据拟合到单位点模型得到的KD值为40 ± 3 pM。
DHβE(IC50 = 260 - 470 nM)和新型尼古丁类似物NDNI(IC50 = 7 - 10 μM)对30 pM ± [3H] - 埃博霉素与天然脑和异源表达的α4β2受体的结合抑制效果相同。
结果表明,大鼠脑中含α4β2的烟碱型受体和异源表达的大鼠α4β2受体对± [3H] - 埃博霉素、DHβE和NDNI具有相似的亲和力。