Chalfie M, Tu Y, Euskirchen G, Ward WW, Prasher DC (February 1994). "Green fluorescent protein as a marker for gene expression". Science. 263 (5148). National Library of Medicine: 802–805. Bibcode:1994Sci...263..802C. doi:10.1126/science.8303295. PMID8303295.
Lelimousin M, Noirclerc-Savoye M, Lazareno-Saez C, Paetzold B, Le Vot S, Chazal R, etal. (Oct 2009). "Intrinsic dynamics in ECFP and Cerulean control fluorescence quantum yield". Biochemistry. 48 (42): 10038–10046. Bibcode:2009Bioc...4810038L. doi:10.1021/bi901093w. PMID19754158.
Ma Y, Yu JG, Sun Q, Li Z, Smith SC (2015-07-01). "The mechanism of dehydration in chromophore maturation of wild-type green fluorescent protein: A theoretical study". Chemical Physics Letters. 631–632: 42–46. Bibcode:2015CPL...631...42M. doi:10.1016/j.cplett.2015.04.061. ISSN0009-2614.
Prendergast FG, Mann KG (Aug 1978). "Chemical and physical properties of aequorin and the green fluorescent protein isolated from Aequorea forskålea". Biochemistry. 17 (17): 3448–53. doi:10.1021/bi00610a004. PMID28749.
Chalfie M, Tu Y, Euskirchen G, Ward WW, Prasher DC (February 1994). "Green fluorescent protein as a marker for gene expression". Science. 263 (5148). National Library of Medicine: 802–805. Bibcode:1994Sci...263..802C. doi:10.1126/science.8303295. PMID8303295.
Phillips GJ (Oct 2001). "Green fluorescent protein—a bright idea for the study of bacterial protein localization". FEMS Microbiology Letters. 204 (1): 9–18. doi:10.1111/j.1574-6968.2001.tb10854.x. PMID11682170.
Uckert W, Pedersen L, Günzburg W (2000). "Green fluorescent protein retroviral vector: generation of high-titer producer cells and virus supernatant". Gene Therapy of Cancer. Methods in Molecular Medicine. Vol.35. pp.275–85. doi:10.1385/1-59259-086-1:275. ISBN1-59259-086-1. PMID21390811.
McRae SR, Brown CL, Bushell GR (May 2005). "Rapid purification of EGFP, EYFP, and ECFP with high yield and purity". Protein Expression and Purification. 41 (1): 121–127. doi:10.1016/j.pep.2004.12.030. PMID15802229.
Wang Z, Ma H, Mao Y, Ma K (2026-06-06). "The widely used eGFP sequence produces an unintended protein product". bioRxiv10.64898/2026.06.02.729456.
Pédelacq JD, Cabantous S, Tran T, Terwilliger TC, Waldo GS (Jan 2006). "Engineering and characterization of a superfolder green fluorescent protein". Nature Biotechnology. 24 (1): 79–88. doi:10.1038/nbt1172. PMID16369541. S2CID2966399.
Lelimousin M, Noirclerc-Savoye M, Lazareno-Saez C, Paetzold B, Le Vot S, Chazal R, etal. (Oct 2009). "Intrinsic dynamics in ECFP and Cerulean control fluorescence quantum yield". Biochemistry. 48 (42): 10038–10046. Bibcode:2009Bioc...4810038L. doi:10.1021/bi901093w. PMID19754158.
Wiens MD, Shen Y, Li X, Salem MA, Smisdom N, Zhang W, etal. (December 2016). "A Tandem Green-Red Heterodimeric Fluorescent Protein with High FRET Efficiency". ChemBioChem. 17 (24): 2361–2367. doi:10.1002/cbic.201600492. PMID27781394. S2CID4301322.
Mattson S, Tran GN, Rodriguez EA (2023). "Directed Evolution of Fluorescent Proteins in Bacteria". In Sharma M (ed.). Fluorescent Proteins. Methods in Molecular Biology. Vol.2564. New York, NY: Springer US. pp.75–97. doi:10.1007/978-1-0716-2667-2_4. ISBN978-1-0716-2666-5. PMID36107338.
Montecinos-Franjola F, Lin JY, Rodriguez EA (2020-11-16). "Fluorescent proteins for in vivo imaging, where's the biliverdin?". Biochemical Society Transactions. 48 (6): 2657–2667. doi:10.1042/BST20200444. PMID33196077. S2CID226971864.
Bokman SH, Ward WW (1982). "Reversible denaturation of Aequorea green-fluorescent protein: physical separation and characterization of the renatured protein". Biochemistry. 21 (19): 4535–4540. doi:10.1021/bi00262a003. PMID6128025.
Chudakov DM, Matz MV, Lukyanov S, Lukyanov KA (Jul 2010). "Fluorescent proteins and their applications in imaging living cells and tissues". Physiological Reviews. 90 (3): 1103–63. doi:10.1152/physrev.00038.2009. PMID20664080. S2CID10767597.
Rosenow MA, Huffman HA, Phail ME, Wachter RM (April 2004). "The crystal structure of the Y66L variant of green fluorescent protein supports a cyclization-oxidation-dehydration mechanism for chromophore maturation". Biochemistry. 43 (15): 4464–4472. doi:10.1021/bi0361315. PMID15078092.
Ma Y, Yu JG, Sun Q, Li Z, Smith SC (2015-07-01). "The mechanism of dehydration in chromophore maturation of wild-type green fluorescent protein: A theoretical study". Chemical Physics Letters. 631–632: 42–46. Bibcode:2015CPL...631...42M. doi:10.1016/j.cplett.2015.04.061. ISSN0009-2614.
Arun KH, Kaul CL, Ramarao P (2005). "Green fluorescent proteins in receptor research: an emerging tool for drug discovery". Journal of Pharmacological and Toxicological Methods. 51 (1): 1–23. doi:10.1016/j.vascn.2004.07.006. PMID15596111.
Song YH, Kim CS, Seo JH (April 2016). "Noninvasive monitoring of environmental toxicity through green fluorescent protein expressing Escherichia coli". Korean Journal of Chemical Engineering. 33 (4): 1331–6. doi:10.1007/s11814-015-0253-1. S2CID62828580.
Pan Y, Leifert A, Graf M, Schiefer F, Thoröe-Boveleth S, Broda J, etal. (March 2013). "High-sensitivity real-time analysis of nanoparticle toxicity in green fluorescent protein-expressing zebrafish". Small. 9 (6). Weinheim an Der Bergstrasse, Germany: 863–9. doi:10.1002/smll.201201173. PMID23143852.
Chudakov DM, Lukyanov S, Lukyanov KA (Dec 2005). "Fluorescent proteins as a toolkit for in vivo imaging". Trends in Biotechnology. 23 (12): 605–13. doi:10.1016/j.tibtech.2005.10.005. PMID16269193.
Prendergast FG, Mann KG (Aug 1978). "Chemical and physical properties of aequorin and the green fluorescent protein isolated from Aequorea forskålea". Biochemistry. 17 (17): 3448–53. doi:10.1021/bi00610a004. PMID28749.
Chalfie M, Tu Y, Euskirchen G, Ward WW, Prasher DC (February 1994). "Green fluorescent protein as a marker for gene expression". Science. 263 (5148). National Library of Medicine: 802–805. Bibcode:1994Sci...263..802C. doi:10.1126/science.8303295. PMID8303295.
Phillips GJ (Oct 2001). "Green fluorescent protein—a bright idea for the study of bacterial protein localization". FEMS Microbiology Letters. 204 (1): 9–18. doi:10.1111/j.1574-6968.2001.tb10854.x. PMID11682170.
Uckert W, Pedersen L, Günzburg W (2000). "Green fluorescent protein retroviral vector: generation of high-titer producer cells and virus supernatant". Gene Therapy of Cancer. Methods in Molecular Medicine. Vol.35. pp.275–85. doi:10.1385/1-59259-086-1:275. ISBN1-59259-086-1. PMID21390811.
McRae SR, Brown CL, Bushell GR (May 2005). "Rapid purification of EGFP, EYFP, and ECFP with high yield and purity". Protein Expression and Purification. 41 (1): 121–127. doi:10.1016/j.pep.2004.12.030. PMID15802229.
Pédelacq JD, Cabantous S, Tran T, Terwilliger TC, Waldo GS (Jan 2006). "Engineering and characterization of a superfolder green fluorescent protein". Nature Biotechnology. 24 (1): 79–88. doi:10.1038/nbt1172. PMID16369541. S2CID2966399.
Lelimousin M, Noirclerc-Savoye M, Lazareno-Saez C, Paetzold B, Le Vot S, Chazal R, etal. (Oct 2009). "Intrinsic dynamics in ECFP and Cerulean control fluorescence quantum yield". Biochemistry. 48 (42): 10038–10046. Bibcode:2009Bioc...4810038L. doi:10.1021/bi901093w. PMID19754158.
Wiens MD, Shen Y, Li X, Salem MA, Smisdom N, Zhang W, etal. (December 2016). "A Tandem Green-Red Heterodimeric Fluorescent Protein with High FRET Efficiency". ChemBioChem. 17 (24): 2361–2367. doi:10.1002/cbic.201600492. PMID27781394. S2CID4301322.
Mattson S, Tran GN, Rodriguez EA (2023). "Directed Evolution of Fluorescent Proteins in Bacteria". In Sharma M (ed.). Fluorescent Proteins. Methods in Molecular Biology. Vol.2564. New York, NY: Springer US. pp.75–97. doi:10.1007/978-1-0716-2667-2_4. ISBN978-1-0716-2666-5. PMID36107338.
Montecinos-Franjola F, Lin JY, Rodriguez EA (2020-11-16). "Fluorescent proteins for in vivo imaging, where's the biliverdin?". Biochemical Society Transactions. 48 (6): 2657–2667. doi:10.1042/BST20200444. PMID33196077. S2CID226971864.
Bokman SH, Ward WW (1982). "Reversible denaturation of Aequorea green-fluorescent protein: physical separation and characterization of the renatured protein". Biochemistry. 21 (19): 4535–4540. doi:10.1021/bi00262a003. PMID6128025.
Chudakov DM, Matz MV, Lukyanov S, Lukyanov KA (Jul 2010). "Fluorescent proteins and their applications in imaging living cells and tissues". Physiological Reviews. 90 (3): 1103–63. doi:10.1152/physrev.00038.2009. PMID20664080. S2CID10767597.
Rosenow MA, Huffman HA, Phail ME, Wachter RM (April 2004). "The crystal structure of the Y66L variant of green fluorescent protein supports a cyclization-oxidation-dehydration mechanism for chromophore maturation". Biochemistry. 43 (15): 4464–4472. doi:10.1021/bi0361315. PMID15078092.
Arun KH, Kaul CL, Ramarao P (2005). "Green fluorescent proteins in receptor research: an emerging tool for drug discovery". Journal of Pharmacological and Toxicological Methods. 51 (1): 1–23. doi:10.1016/j.vascn.2004.07.006. PMID15596111.
Pan Y, Leifert A, Graf M, Schiefer F, Thoröe-Boveleth S, Broda J, etal. (March 2013). "High-sensitivity real-time analysis of nanoparticle toxicity in green fluorescent protein-expressing zebrafish". Small. 9 (6). Weinheim an Der Bergstrasse, Germany: 863–9. doi:10.1002/smll.201201173. PMID23143852.
Chudakov DM, Lukyanov S, Lukyanov KA (Dec 2005). "Fluorescent proteins as a toolkit for in vivo imaging". Trends in Biotechnology. 23 (12): 605–13. doi:10.1016/j.tibtech.2005.10.005. PMID16269193.
Wiens MD, Shen Y, Li X, Salem MA, Smisdom N, Zhang W, etal. (December 2016). "A Tandem Green-Red Heterodimeric Fluorescent Protein with High FRET Efficiency". ChemBioChem. 17 (24): 2361–2367. doi:10.1002/cbic.201600492. PMID27781394. S2CID4301322.
Montecinos-Franjola F, Lin JY, Rodriguez EA (2020-11-16). "Fluorescent proteins for in vivo imaging, where's the biliverdin?". Biochemical Society Transactions. 48 (6): 2657–2667. doi:10.1042/BST20200444. PMID33196077. S2CID226971864.
Chudakov DM, Matz MV, Lukyanov S, Lukyanov KA (Jul 2010). "Fluorescent proteins and their applications in imaging living cells and tissues". Physiological Reviews. 90 (3): 1103–63. doi:10.1152/physrev.00038.2009. PMID20664080. S2CID10767597.
Song YH, Kim CS, Seo JH (April 2016). "Noninvasive monitoring of environmental toxicity through green fluorescent protein expressing Escherichia coli". Korean Journal of Chemical Engineering. 33 (4): 1331–6. doi:10.1007/s11814-015-0253-1. S2CID62828580.
Ma Y, Yu JG, Sun Q, Li Z, Smith SC (2015-07-01). "The mechanism of dehydration in chromophore maturation of wild-type green fluorescent protein: A theoretical study". Chemical Physics Letters. 631–632: 42–46. Bibcode:2015CPL...631...42M. doi:10.1016/j.cplett.2015.04.061. ISSN0009-2614.