Maciuk Alexandre, Moaddel Ruin, Haginaka Jun, Wainer Irving W
Gerontology Research Center, National Institute on Aging, National Institutes of Health, 5600 Nathan Shock Drive, Baltimore, MD 21224-6825, United States.
J Pharm Biomed Anal. 2008 Sep 29;48(2):238-46. doi: 10.1016/j.jpba.2007.11.024. Epub 2007 Nov 26.
This manuscript reports an approach to the screening of natural product extracts for compounds which are active at membrane-bound receptors, ion channels and transporters. The technique is based upon cellular membrane affinity chromatography (CMAC) columns created through the immobilization of cellular membrane fragments on liquid chromatography stationary phases. In this study a CMAC(nAChR(+)) column was created out of membranes from a transfected cell line expressing the alpha3beta4 neuronal nicotinic acetylcholine receptor (nAChR) and the column was used to screen tobacco smoke condensates. A strategy involving parallel screening with a CMAC column created from a non-transfected form of the same cell line, CMAC(nAChR(-)) was adopted. The condensate was chromatographed on both columns, timed fractions collected and concentrated. Each fraction was analyzed on a C18 column in order to establish a chromatographic fingerprint of each fraction and a differential elution profile of each compound. Comparison of the elution profiles from the CMAC(nAChR(+)) and CMAC(nAChR(-)) columns identified patterns that could be associated with high affinity ligands and with low-affinity/non-binding compounds. Known strong ligands ((S)-nicotine, (R,S)-anatabine, N'-nitrosonornicotine), weak ligands ((R,S)-nornicotine, anabasine) as well as known non-ligands (N-methyl-gamma-oxo-3-pyridinebutanamide, (1'S,2'S)-nicotine 1'-oxide) have been identified in the complex extract. The results demonstrate that CMAC-based screens can be used in the identification of compounds within natural product extracts that bind to membrane-based targets.
本手稿报道了一种筛选天然产物提取物中对膜结合受体、离子通道和转运体有活性的化合物的方法。该技术基于细胞膜亲和色谱(CMAC)柱,通过将细胞膜片段固定在液相色谱固定相上制备而成。在本研究中,用表达α3β4神经元烟碱型乙酰胆碱受体(nAChR)的转染细胞系的膜制备了CMAC(nAChR(+))柱,并用于筛选烟草烟雾浓缩物。采用了一种策略,即与由同一细胞系的非转染形式制备的CMAC柱(CMAC(nAChR(-)))进行平行筛选。将浓缩物在两根柱上进行色谱分析,定时收集馏分并浓缩。对每个馏分在C18柱上进行分析,以建立每个馏分的色谱指纹图谱和每种化合物的差异洗脱图谱。比较CMAC(nAChR(+))柱和CMAC(nAChR(-))柱的洗脱图谱,确定了可能与高亲和力配体以及低亲和力/非结合化合物相关的模式。在复杂提取物中已鉴定出已知的强配体((S)-尼古丁、(R,S)-安纳他滨、N'-亚硝基降烟碱)、弱配体((R,S)-去甲烟碱、新烟草碱)以及已知的非配体(N-甲基-γ-氧代-3-吡啶丁酰胺、(1'S,2'S)-尼古丁1'-氧化物)。结果表明,基于CMAC的筛选可用于鉴定天然产物提取物中与膜靶点结合的化合物。