Enhanced green fluorescent protein (EGFP) for space radiation research using mammalian cells in the International Space Station
Baumstark-Khan, C.; Hellweg, C.E.; Palm, M.; Horneck, G.
Physica Medica Pm An International Journal Devoted to the Applications of Physics to Medicine and Biology Official Journal of the Italian Association of Biomedical Physics 17 Suppl. 1: 210-214
2001
ISSN/ISBN: 1120-1797 PMID: 11776264 Document Number: 6705
In the endeavour to assess radiation risks for humans in space the concerted action of all stimuli (e.g. radiation and microgravity) has to be known already at a cellular level. The introduction of reporter genes into mammalian cells which allows the visualisation of modified gene expression levels, signal transduction rates and cell metabolism activities will supply basic information on the cellular response to space radiation. The cloning of the gene for green fluorescent protein (GFP) from the jellyfish Aequorea victoria and its subsequent expression in heterologous systems has established GFP as a unique genetic reporter system for use in a variety of organisms. Unlike other reporters, GFP fluorescence emerges in the absence of substrates or cofactors and allows for non-invasive monitoring in living and in paraformaldehyde-fixed cells. Enhancement of wild-type GFP by human codon optimisation and fluorophore mutation (EGFP) resulted in higher expression levels in mammalian cells and brighter fluorescence. The suitability of EGFP for gene expression studies to be performed on the ISS is shown for recombinant mammalian cells in response to UVC exposure.
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