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Reference on EC 1.3.1.83 - geranylgeranyl diphosphate reductase

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REF.
AUTHORS
TITLE
JOURNAL
VOL.
PAGES
YEAR
ORGANISM (UNIPROT)
PUBMED ID
SOURCE
Shpilyov, A.V.; Zinchenko, V.V.; Shestakov, S.V.; Grimm, B.; Lokstein, H.
Inactivation of the geranylgeranyl reductase (ChlP) gene in the cyanobacterium Synechocystis sp. PCC 6803
Biochim. Biophys. Acta
1706
195-203
2005
Synechocystis sp. (Q55087), Synechocystis sp.
Manually annotated by BRENDA team
Keller, Y.; Bouvier, F.; dHarlingue, A.; Camara, B.
Metabolic compartmentation of plastid prenyllipid biosynthesis - evidence for the involvement of a multifunctional geranylgeranyl reductase
Eur. J. Biochem.
251
413-417
1998
Arabidopsis thaliana (Q9CA67), Arabidopsis thaliana
Manually annotated by BRENDA team
Gomez Maqueo Chew, A.; Frigaard, N.U.; Bryant, D.A.
Identification of the bchP gene, encoding geranylgeranyl reductase in Chlorobaculum tepidum
J. Bacteriol.
190
747-749
2008
Chlorobaculum tepidum (Q8KAB0), Chlorobaculum tepidum
Manually annotated by BRENDA team
Giannino, D.; Condello, E.; Bruno, L.; Testone, G.; Tartarini, A.; Cozza, R.; Innocenti, A.M.; Bitonti, M.B.; Mariotti, D.
The gene geranylgeranyl reductase of peach (Prunus persica [L.] Batsch) is regulated during leaf development and responds differentially to distinct stress factors
J. Exp. Bot.
55
2063-2073
2004
Prunus persica (Q6XJV3), Prunus persica
Manually annotated by BRENDA team
Tanaka, R.; Oster, U.; Kruse, E.; Rudiger, W.; Grimm, B.
Reduced activity of geranylgeranyl reductase leads to loss of chlorophyll and tocopherol and to partially geranylgeranylated chlorophyll in transgenic tobacco plants expressing antisense RNA for geranylgeranyl reductase
Plant Physiol.
120
695-704
1999
Nicotiana tabacum (Q9ZS34), Nicotiana tabacum
Manually annotated by BRENDA team
Soll, J.; Schultz, G.; Rudiger, W.; Benz, J.
Hydrogenation of geranylgeraniol: two pathways exist in spinach chloroplasts
Plant Physiol.
71
849-854
1983
Spinacia oleracea
Manually annotated by BRENDA team
Grasses, T.; Grimm, B.; Koroleva, O.; Jahns, P.
Loss of alpha-tocopherol in tobacco plants with decreased geranylgeranyl reductase activity does not modify photosynthesis in optimal growth conditions but increases sensitivity to high-light stress
Planta
213
620-628
2001
Nicotiana tabacum
Manually annotated by BRENDA team
Zhou, Y.; Gong, Z.; Yang, Z.; Yuan, Y.; Zhu, J.; Wang, M.; Yuan, F.; Wu, S.; Wang, Z.; Yi, C.; Xu, T.; Ryom, M.; Gu, M.; Liang, G.
Mutation of the light-induced yellow leaf 1 gene, which encodes a geranylgeranyl reductase, affects chlorophyll biosynthesis and light sensitivity in rice
PLoS ONE
8
e75299
2013
Oryza sativa Japonica Group (U5LY03)
Manually annotated by BRENDA team
Wang, P.; Li, C.; Wang, Y.; Huang, R.; Sun, C.; Xu, Z.; Zhu, J.; Gao, X.; Deng, X.; Wang, P.
Identification of a Geranylgeranyl reductase gene for chlorophyll synthesis in rice
SpringerPlus
3
201
2014
Oryza sativa Japonica Group (Q6Z2T6)
Manually annotated by BRENDA team
Meadows, C.; Mingardon, F.; Garabedian, B.; Baidoo, E.; Benites, V.; Rodrigues, A.; Abourjeily, R.; Chanal, A.; Lee, T.
Discovery of novel geranylgeranyl reductases and characterization of their substrate promiscuity
Biotechnol. Biofuels
11
340
2018
Streptomyces coelicolor, Sulfolobus acidocaldarius, Thermoplasma acidophilum, Methanocaldococcus infernus, Thermococcus nautili, Archaeoglobus fulgidus (A0A075WDX8), Pyrolobus fumarii (G0EHJ8), Methanosarcina acetivorans (Q8TSV3), Pyrolobus fumarii DSM 11204 (G0EHJ8), Methanosarcina acetivorans DSM 2834 (Q8TSV3), Archaeoglobus fulgidus DSM 8774 (A0A075WDX8)
Manually annotated by BRENDA team
Kimura, E.; Abe, T.; Murata, K.; Kimura, T.; Otoki, Y.; Yoshida, T.; Miyazawa, T.; Nakagawa, K.
Identification of OsGGR2, a second geranylgeranyl reductase involved in alpha-tocopherol synthesis in rice
Sci. Rep.
8
1870
2018
Oryza sativa
Manually annotated by BRENDA team