Poronnik P, O'Mullane L M, Harding E A, Greger R, Cook D I
Department of Physiology, University of Sydney, New South Wales, Australia.
Cell Calcium. 1998 Aug;24(2):97-103. doi: 10.1016/s0143-4160(98)90077-x.
Here we report on the feasibility of using replication deficient adenoviruses to modify signal transduction systems in epithelia. We constructed two viruses, one expressing a dominant negative mutant of the alpha-subunit of Gq (Ad-EF1-dnG alpha q) and the other expressing the wild-type alpha-subunit of Gq (Ad-EF1-wtG alpha q). We used an adenovirus expressing green fluorescent protein (Ad-EF1-GFP20) to show that infection of cultured cells with an adenovirus results in at least 95% expression of the transgene in both HSG and HT29 cells. We also used an adenovirus that expresses no transgene (Ad-MX17) to demonstrate that adenoviral infection itself does not affect the resting concentration of cytosolic Ca2+ ([Ca2+]i) or the carbachol responses in these cells. We further show that Ad-EF1-dnG alpha q inhibits the increase in [Ca2+]i produced by muscarinic receptor activation in both the cell lines we studied. This inhibitory effect is not shared by Ad-EF1-wtG alpha q, which indicates that in both HSG and HT29 cells, the increase in [Ca2+]i produced by muscarinic receptor activation is largely mediated by activation of Gq. Neither virus affected the resting level of [Ca2+]i in these cells. Our findings confirm the feasibility of using replication deficient adenoviruses expressing dominant negative mutants to investigate the role of G proteins in signal transduction systems.
在此,我们报告使用复制缺陷型腺病毒修饰上皮细胞信号转导系统的可行性。我们构建了两种病毒,一种表达Gqα亚基的显性负性突变体(Ad-EF1-dnGαq),另一种表达Gq的野生型α亚基(Ad-EF1-wtGαq)。我们使用表达绿色荧光蛋白的腺病毒(Ad-EF1-GFP20)来表明,用腺病毒感染培养细胞会导致HSG和HT29细胞中转基因的表达率至少达到95%。我们还使用了不表达转基因的腺病毒(Ad-MX17)来证明腺病毒感染本身不会影响这些细胞中胞质Ca2+([Ca2+]i)的静息浓度或对卡巴胆碱的反应。我们进一步表明,Ad-EF1-dnGαq抑制了我们所研究的两种细胞系中由毒蕈碱受体激活所产生的[Ca2+]i的增加。Ad-EF1-wtGαq没有这种抑制作用,这表明在HSG和HT29细胞中,由毒蕈碱受体激活所产生的[Ca2+]i的增加很大程度上是由Gq的激活介导的。两种病毒都没有影响这些细胞中[Ca2+]i的静息水平。我们的研究结果证实了使用表达显性负性突变体的复制缺陷型腺病毒来研究G蛋白在信号转导系统中的作用的可行性。