Green-fluorescent protein from the bioluminescent jellyfish Clytia gregaria: cDNA cloning, expression, and characterization of novel recombinant protein

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作者
Svetlana V. Markova
Ludmila P. Burakova
Ludmila A. Frank
Stefan Golz
Kseniya A. Korostileva
Eugene S. Vysotski
机构
[1] Russian Academy of Sciences Siberian Branch,Photobiology Lab, Institute of Biophysics
[2] Siberian Federal University,undefined
[3] Bayer Schering Pharma AG,undefined
[4] BSP-GDD-GTR-TD-GT,undefined
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Photochemical & Photobiological Sciences | 2010年 / 9卷
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摘要
The bioluminescent systems of many marine organisms are comprised of two proteins—the Ca2+-regulated photoprotein and green-fluorescent protein (GFP). This work reports the cloning of the full-size cDNA encoding GFP (cgreGFP) from jellyfish Clytia gregaria, its expression and properties of the recombinant protein. The overall degree of identity between the amino acid sequence of the novel cgreGFP and the sequence of GFP (avGFP) from Aequorea victoria is 42% (similarity–64%) despite these GFPs originating from jellyfish that both belong to the same class, Hydrozoa. However although the degree of identity is low, three residues, Ser-Tyr-Gly, which form the chromophore are identical in both GFPs. The cgreGFP displayed two absorption peaks at 278 and 485 nm, and the fluorescence maximum at 500 nm. The fluorescence quantum yield was determined to be 0.86, the brightness to be 54 mM−1 cm−1. For the first time we have also demonstrated an efficient radiationless energy transfer in vitro between clytin and cgreGFP in solution at micromolar concentrations. The cgreGFP may be a useful intracellular fluorescent marker, as it was able to be expressed in mammalian cells.
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页码:757 / 765
页数:8
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共 130 条
[1]  
Shimomura O(1962)Extraction, purification and properties of aequorin, a bioluminescent protein from the luminous hydromedusan, J. Cell. Comp. Physiol. 59 223-239
[2]  
Johnson F H(1977)Aequorin luminescence: relation of light emission to calcium concentration–a calcium-independent component Science 195 996-998
[3]  
Saiga Y(1972)Structure of the light-emitting moiety of aequorin Biochemistry 11 1602-1608
[4]  
Allen D G(1973)Evidence for similar biochemical requirements for bioluminescence among the coelenterates J. Cell. Physiol. 81 291-297
[5]  
Blinks J R(2004)Ca Acc. Chem. Res. 37 405-415
[6]  
Prendergast F G(1971)-regulated photoproteins: structural insight into the bioluminescence mechanism J. Cell. Physiol. 77 313-318
[7]  
Shimomura O(1983)Energy transfer in a bioluminescent system Proc. R. Soc. London, Ser. B 220 183-217
[8]  
Johnson F H(1992)The spectral characteristics of luminous marine organisms Gene 111 229-233
[9]  
Cormier M J(2002)Primary structure of the Mar. Biotechnol. 4 155-162
[10]  
Hori K(2003) green-fluorescent protein Biochem. J. 373 403-408