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在Sf9昆虫细胞-杆状病毒系统中表达毒蕈碱型M_2及M_5受体重组突变体被引量:1
2011年
目的为乙酰胆碱毒蕈碱(M)受体亚型特异性的变构调节剂及基因工程的研究提供实验平台。方法用PCR及搭桥PCR法对乙酰胆碱M2及M5受体作以下突变:①将N-糖基化位点Asp突变为Asn;②删除对蛋白酶敏感的M受体的第三个细胞内环;③在C端添加凝血酶识别位点(CMV)和6-His标记。将PCR扩增出重组嵌合蛋白基因亚克隆到杆状病毒转移载体,制备重组杆状病毒并感染昆虫细胞表达M2/M5受体蛋白。Western印迹及放射性配体受体结合实验验证受体的正确表达及功能。结果通过搭桥PCR,成功扩增出1018 bp的重组M2受体和1041 bp重组M5受体核酸序列;使用pUC/M13的扩增引物成功构建M2/M5重组转移载体。将重组载体质粒与线性化病毒DNA共转染昆虫细胞Sf9,制备重组杆状病毒并感染昆虫细胞,见细胞空泡样病变。Western印迹分析确定重组杆状病毒感染昆虫细胞M2/M5蛋白表达,放射性配体受体饱和实验结果表明,表达的重组受体蛋白与[3H]N-甲基-东莨菪碱具有特异性结合能力。结论 Sf9昆虫细胞能够表达M2及M5重组受体蛋白,M2及M5重组受体蛋白的病毒样颗粒可用于M受体的新药研究。
牟男孙洪良郑建全王丽韫
关键词:毒蕈碱受体昆虫细胞杆状病毒
Characterization of subtype selection properties of R-(-)-DM-phencynonate hydrochloride and its racemate on muscarinic receptors
2009年
In order to compare the potential selectivity of R-(-)-DM-phencynonate hydrochloride with its racemate (±)-DM- phencynonate hydrochloride on acetylcholine muscarinic receptor subtypes, the five human acetylcholine muscarinic receptor subtypes (M1- M5) (CHO-hml-5R) were cloned and expressed in Chinese hamster ovary (CHO-K1) cell line. The specific mRNAs of the five acetylcholine muscarinic receptor subtypes were detected by the reverse transcription-polymerase chain reaction (RT-PCR) method, demonstrating the definite expression of muscarinic receptor subtype genes (CHO-hml-5R). The affinity and saturability of different muscarinic receptor subtypes to [^3H] N-methylscopolamine ([^3H]-NMS) were obtained by radioligand binding assay. Equilibrium binding assay revealed that the maximum binding capacity of [^3H]-NMS (Bmax value) to CHO-hml-5R were 40.22±3.23, 24.53±4.11, 29.65±2.65, 25.41±2.46, 32.78±4.81 pmol/mg·protein, respectively. Kd values of [^3H]-NMS to muscarinic receptors M1 to M5 were 0.97±0.22, 1.16±0.14, 0.99±0.06, 0.56±0.08, 1.12±0.06 nM, respectively. R-(-)-DM- phencynonate hydrochloride was found to block the M4 receptor with a much higher potency (pD2 = 7.48) than those displayed on M1 (pD2 = 6.20), M2 (pD2 = 5.99), M3 (pD2 = 5.99) and M5 (pD2 = 6.70) subtypes. However, for (±)-DM-phencynonate hydrochloride, no significant subtype receptor selectivity was found. Both (±)-DM- and R-(-)-DM-phencynonate hydrochloride showed allosteric effects on muscarinic receptors, the Hill coefficient (nH) of five receptor subtypes was less than 1, respectively. The results revealed that R-(-)-DM-phencynonate hydrochloride showed selectivity torwards M4 subtype, and there were allosteric effects for both R-(-)-DM-phencynonate hydrochloride and (±)-DM-phencynonate hydrochloride on muscarinic receptors.
王丽韫孙洪良牟男仲伯华刘克良郑建全
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