重庆市科委攻关项目(渝科发计字[2002]1号)和重庆市计委重点高新技术项目(渝计委计[2001]1192号).
This work was supported by grants from The Key Technologies R&D Program of Chongqing Science and Technology Commission and The Hi-Tech R&D Program of Chongqing Municipal Planning Commission.
为了建立黑色素皮质素受体(MC4R)激动剂的高通量筛选方法,将人的MC4R基因质粒(hMC4R/pCDNA3.1)与报告基因质粒(3×CRE/3×MRE/SRE-LUC)按1∶5的比例共转染到HEK293细胞,通过G418筛选,建立了稳定的MC4R激动剂筛选细胞株.利用MC4R内源激动剂α-MSH探索和优化了每孔接种细胞数目、激动剂孵育时间、溶剂DMSO终浓度、荧光素酶底物浓度等筛选条件,建立了可靠的筛选方法.实验表明:当细胞数目为4×104个/孔,激动剂孵育时间为8 h,每孔DMSO终浓度小于1%和α-MSH终浓度为1 μmol/L时,系统Z'-因子接近0.7,能够用于MC4R激动剂的高通量筛选.
In order to find agonists for melanocortin 4 receptor (MC4R), an assay in vitro was established for high throughout screening. The MC4R receptor plasmid (MC4R/pCDNA3.1) and reporter gene plasmid (3×CRE/3×MRE/SRE-LUC) were cotransfected HEK293 to establish a cell line for agonist screening. To identify and optimize the assay condition, the effects of some factors were examined by using α-MSH, such as cell number per well, incubation time, final concentration of DMSO and luciferase's substrate concentration on the assay. A steady cell line and a reliable method were established for MC4R agonist screening, the Z'-factor value was near to 0.7 on the condition in each well that the cell number were 4×104 , the agonist incubation time was 8 h, the final concentration of DMSO was less than 1%, and the final concentration of α-MSH was 1 μmol/L. This technology can be applied to identify agonist for MC4R receptor.
郑旭煦,欧阳克清,高虹,许治良,胡应和,蔡绍皙.黑色素皮质素受体激动剂的高通量筛选模型研究[J].生物化学与生物物理进展,2004,31(1):36-40
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