Green fluorescent protein and its derivatives as versatile markers for gene expression in living Drosophila melanogaster, plant and mammalian cells

被引:86
作者
Plautz, JD
Day, RN
Dailey, GM
Welsh, SB
Hall, JC
Halpain, S
Kay, SA
机构
[1] UNIV VIRGINIA,DEPT BIOL,NSF CTR BIOL TIMING,CHARLOTTESVILLE,VA 22903
[2] UNIV VIRGINIA,HLTH SCI CTR,DIV ENDOCRINOL & METAB,NSF CTR BIOL TIMING,CHARLOTTESVILLE,VA 22908
[3] UNIV CALIF BERKELEY,DEPT MOLEC & CELLULAR BIOL,BERKELEY,CA 94720
[4] BRANDEIS UNIV,DEPT BIOL,NSF CTR BIOL TIMING,WALTHAM,MA 02254
[5] UNIV VIRGINIA,HLTH SCI CTR,MARKEY CTR CELL SIGNALING,CHARLOTTESVILLE,VA 22908
[6] UNIV VIRGINIA,HLTH SCI CTR,DEPT NEUROSCI,CHARLOTTESVILLE,VA 22908
关键词
transcription; glass gene; soybean suspension culture; particle bombardment; GH3; cells; pituitary; fluorescence microscopy; image deconvolution; exhaustive photon reassignment;
D O I
10.1016/0378-1119(95)00700-8
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
We have investigated the utility of the green fluorescent protein (GFP) as a marker for gene expression in living adult Drosophila melanogaster (Dm) and cultured plant and mammalian cells, Using Dm, we generated transgenic flies bearing a glass-responsive gfp fusion gene to test the utility of GFP as a spatial reporter. In the adult living fly, GFP is clearly visible in the ocelli and the eye. We have optimized the use of filters for distinguishing the GFP signal from abundant autofluorescence in living Dm. In addition, we have used GFP to identify photoreceptor cells in pupal eye cultures that have been fixed and stained according to standard histological procedures. GFP was also detected in individual living plant cells following transient transfection of soybean suspension cultures, demonstrating that GFP is an effective transformation marker in plant cells, Similarly, transient transfection of mammalian cells with a modified form of GFP, S65T, allowed detection of single living cells expressing the reporter, This modified form of GFP gave a robust signal that was resistant to photobleaching. We then used a CellScan system exhaustive photon reassignment (EPR) deconvolution algorithm to generate high-resolution three-dimensional images of GFP fluorescence in the living cell.
引用
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页码:83 / 87
页数:5
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