Expression of a Neuronal Nicotinic Acetylcholine Receptor in Insect and Mammalian Host Cell Systems

被引:0
作者
E. M. Aztiria
M. C. Sogayar
F. J. Barrantes
机构
[1] Universidad Nacional del Sur-CONICET,Instituto de Investigaciones Bioquímicas
[2] Universidade de São Paulo,Instituto de Química, Departamento de Bioquímica
[3] Universidad Nacional del Sur-CONICET,Instituto de Investigaciones Bioquímicas
来源
Neurochemical Research | 2000年 / 25卷
关键词
α7; heterologous expression; protein expression system; transcript expression; host cell systems; central nervous system;
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摘要
Different mammalian and insect somatic host cell systems were tested in their ability to express, fold, and assemble α7-type neuronal acetylcholine receptor (AChR) both at the transcriptional and translational level. For this purpose we employed clonal cell lines derived from the neural crest, such as PC12 cells from a rat adrenal pheochromocytoma, and GH3 cells isolated from a rat pituitary tumor, as well as non-neuronal cells such as NIH-3T3 fibroblasts from embryonic NIH Swiss mouse and Sf9 cells from ovary tissue of the Spodoptera frugiperda butterfly. Total RNA, isolated from either transfected or non-transfected PC12, GH3 or 3T3 cells, or recombinant AcNPV-infected and mock-infected Sf9 cells was analyzed by Northern blot. PC12 cells, which endogenously express α7 AChR, and all its heterologous α7-transfectant clones, exhibited variable but generally high amounts of a single transcript. GH3 and NIH-3T3 transfectant clones and recombinant AcNPV-infected Sf9 cells expressed variable levels of α7-mRNA, with a single transcript that co-migrated with the 28S rat rRNA. Only the neural crest-derived cell lines appeared to functionally express the α7 AChR, as measured by their [125I]α-bungarotoxin binding ability. The results suggest that heterologous expression of α7 is regulated not at the transcriptional, but at the postranslational level and that not all host cell systems appear to express the cellular factors needed for the correct postranslational modifications leading to mature and functional α7 AChR. Furthermore, the results suggest that tightly controlled expression mechanisms have evolved in parallel with this ancient cholinergic sequence.
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页码:171 / 180
页数:9
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共 235 条
[1]  
Anand R.(1993)Homomeric and native α7 acetylcholine receptors exhibit remarkably similar but not identical pharmacological properties suggesting that the native is a heteromeric complex FEBS Lett. 327 241-246
[2]  
Peng X.(1990)Expression and characterization of the chick nicotinic acetylcholine receptor α-subunit in insect cells using a baculovirus vector Eur. J. Biochem. 192 451-458
[3]  
Lindstrom J.(1995)α-Bungarotoxin binding sites in rat hippocampal and cortical cultures: initial characterisation, colocalisation with α7 subunits and up-regulation by chronic nicotine treatment Brain Res. 672 228-236
[4]  
Atkinson A.(1993)Negative regulatory elements upstream a novel exon of the neuronal nicotinic acetylcholine receptor α2 subunit gene Nucl. Acids Res. 21 2185-2192
[5]  
Earley F.(1997)Detection of functional nicotinic receptors blocked by alpha-bungarotoxin on PC12 cells and dependence of their expression on post-translational events J. Neurosci. 17 6094-6104
[6]  
Beadle D.(1994)Sequencing and promoter analysis of the genomic region between the rat neuronal nicotinic acetylcholine receptor β4 and α3 genes J. Neurobiol. 25 960-973
[7]  
King L.(1997)Comparison of the regional expression of nicotinic acetylcholine receptor alpha7 mRNA and [125I]-alphabungarotoxin binding in human postmortem brain J. Comp. Neurol. 387 385-398
[8]  
Barrantes G.(1996)Regulation of alpha7 nicotinic acetylcholine receptors in the developing rat somatosensory cortex by thalamocortical afferents J. Neurosci. 16 2956-2971
[9]  
Rogers A.(1992)The effects of Ca Cell Calcium 13 107-121
[10]  
Lindstrom J.(1978) and calmodulin on adenylyl cyclase activity in plasma membranes derived from neuronal and non-neuronal cells Proc. Natl. Acad. Sci. U.S.A. 72 1016-1028