Heterologous expression of the isopimaric acid pathway in Nicotiana benthamiana and the effect of N-terminal modifications of the involved cytochrome P450 enzyme
暂无分享,去创建一个
B. Hamberger | C. Olsen | A. Z. Nielsen | P. Jensen | Konstantinos Vavitsas | Thiyagarajan Gnanasekaran | J. Andersen-Ranberg
[1] Colin Robinson,et al. Biotechnological exploitation of microalgae. , 2015, Journal of experimental botany.
[2] Jörg Bohlmann,et al. Plant diterpene synthases: exploring modularity and metabolic diversity for bioengineering. , 2015, Trends in biotechnology.
[3] B. Hamberger,et al. Metabolic Engineering of Synechocystis sp. PCC 6803 for Production of the Plant Diterpenoid Manoyl Oxide , 2015, ACS synthetic biology.
[4] O. Ebenhöh,et al. Mathematical modelling of the diurnal regulation of the MEP pathway in Arabidopsis. , 2015, The New phytologist.
[5] A. Makris,et al. Reconstructing the chemical diversity of labdane-type diterpene biosynthesis in yeast. , 2015, Metabolic engineering.
[6] S. Purton,et al. Expression and membrane-targeting of an active plant cytochrome P450 in the chloroplast of the green alga Chlamydomonas reinhardtii. , 2015, Phytochemistry.
[7] C. Olsen,et al. Anchoring a Plant Cytochrome P450 via PsaM to the Thylakoids in Synechococcus sp. PCC 7002: Evidence for Light-Driven Biosynthesis , 2014, PloS one.
[8] J. Gershenzon,et al. Deoxyxylulose 5-Phosphate Synthase Controls Flux through the Methylerythritol 4-Phosphate Pathway in Arabidopsis1[C][W][OPEN] , 2014, Plant Physiology.
[9] D. Leister,et al. Chloroplast evolution, structure and functions , 2014, F1000prime reports.
[10] Ralph Bock,et al. Synthetic biology in plastids. , 2014, The Plant journal : for cell and molecular biology.
[11] S. Mafu,et al. To gibberellins and beyond! Surveying the evolution of (di)terpenoid metabolism. , 2014, Annual review of plant biology.
[12] Birger Lindberg Møller,et al. Redirecting photosynthetic electron flow into light-driven synthesis of alternative products including high-value bioactive natural compounds. , 2014, ACS synthetic biology.
[13] P. Su,et al. Research progress relating to the role of cytochrome P450 in the biosynthesis of terpenoids in medicinal plants , 2014, Applied Microbiology and Biotechnology.
[14] A. Tissier,et al. High-level diterpene production by transient expression in Nicotiana benthamiana , 2013, Plant Methods.
[15] E. López-Juez,et al. Biogenesis and homeostasis of chloroplasts and other plastids , 2013, Nature Reviews Molecular Cell Biology.
[16] O. Kayser,et al. Natural products – modifying metabolite pathways in plants , 2013, Biotechnology journal.
[17] E. Vranová,et al. Network analysis of the MVA and MEP pathways for isoprenoid synthesis. , 2013, Annual review of plant biology.
[18] J. Keasling,et al. High-level semi-synthetic production of the potent antimalarial artemisinin , 2013, Nature.
[19] C. Olsen,et al. Redirecting photosynthetic reducing power toward bioactive natural product synthesis. , 2013, ACS synthetic biology.
[20] A. Munro,et al. What makes a P450 tick? , 2013, Trends in biochemical sciences.
[21] B. Hamberger,et al. Plant P450s as versatile drivers for evolution of species-specific chemical diversity , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[22] Dong Wook Lee,et al. Cytosolic events involved in chloroplast protein targeting. , 2013, Biochimica et biophysica acta.
[23] D. Sherman,et al. Diversity of P450 enzymes in the biosynthesis of natural products. , 2012, Natural product reports.
[24] S. Sligar,et al. Structural differences between soluble and membrane bound cytochrome P450s. , 2012, Journal of inorganic biochemistry.
[25] B. Møller,et al. Light-driven chemical synthesis. , 2012, Trends in plant science.
[26] J. Bohlmann,et al. Evolution of Diterpene Metabolism: Sitka Spruce CYP720B4 Catalyzes Multiple Oxidations in Resin Acid Biosynthesis of Conifer Defense against Insects1[C][W][OA] , 2011, Plant Physiology.
[27] Nicholas J. Turner,et al. Cytochromes P450 as Useful Biocatalysts: Addressing the Limitations , 2011 .
[28] B. Møller,et al. Light-driven cytochrome p450 hydroxylations. , 2011, ACS chemical biology.
[29] R. Bock,et al. Plastid Biotechnology: Food, Fuel, and Medicine for the 21st Century1 , 2011, Plant Physiology.
[30] Keith E. J. Tyo,et al. Isoprenoid Pathway Optimization for Taxol Precursor Overproduction in Escherichia coli , 2010, Science.
[31] Cathie Martin,et al. Genetic Screening Identifies Cyanogenesis-Deficient Mutants of Lotus japonicus and Reveals Enzymatic Specificity in Hydroxynitrile Glucoside Metabolism[W][OA] , 2010, Plant Cell.
[32] G. Lomonossoff,et al. pEAQ: versatile expression vectors for easy and quick transient expression of heterologous proteins in plants. , 2009, Plant biotechnology journal.
[33] R. Bock,et al. Enhancement of Carotenoid Biosynthesis in Transplastomic Tomatoes by Induced Lycopene-to-Provitamin A Conversion1[OA] , 2009, Plant Physiology.
[34] N. Misawa,et al. Biosynthesis of astaxanthin in tobacco leaves by transplastomic engineering. , 2008, The Plant journal : for cell and molecular biology.
[35] J. Bohlmann,et al. Functional plasticity of paralogous diterpene synthases involved in conifer defense , 2008, Proceedings of the National Academy of Sciences.
[36] Thomas Hartmann,et al. From waste products to ecochemicals: fifty years research of plant secondary metabolism. , 2007, Phytochemistry.
[37] J. Bohlmann,et al. Diterpene resin acids in conifers. , 2006, Phytochemistry.
[38] R. Bernhardt,et al. Cytochromes P450 as versatile biocatalysts. , 2006, Journal of biotechnology.
[39] D. Tholl. Terpene synthases and the regulation, diversity and biological roles of terpene metabolism. , 2006, Current opinion in plant biology.
[40] E. Williamson,et al. Isopimaric acid from Pinus nigra shows activity against multidrug‐resistant and EMRSA strains of Staphylococcus aureus , 2005, Phytotherapy research : PTR.
[41] K. Raffa,et al. Effects of Diterpene Acids on Components of a Conifer Bark Beetle–Fungal Interaction: Tolerance by Ips pini and Sensitivity by Its Associate Ophiostoma ips , 2005 .
[42] H. Scheller,et al. Arabidopsis thaliana Plants Lacking the PSI-D Subunit of Photosystem I Suffer Severe Photoinhibition, Have Unstable Photosystem I Complexes, and Altered Redox Homeostasis in the Chloroplast Stroma* , 2003, Journal of Biological Chemistry.
[43] D. Baulcombe,et al. An enhanced transient expression system in plants based on suppression of gene silencing by the p19 protein of tomato bushy stunt virus. , 2003, The Plant journal : for cell and molecular biology.
[44] Lisa Rosgaard,et al. Photosystem I Activity Is Increased in the Absence of the PSI-G Subunit* , 2002, The Journal of Biological Chemistry.
[45] K. Raffa,et al. Effects of Selected Larix laricina Terpenoids on Lymantria dispar (Lepidoptera: Lymantriidae) Development and Behavior , 1999 .
[46] M. J. Coon,et al. Expression of truncated forms of liver microsomal P450 cytochromes 2B4 and 2E1 in Escherichia coli: influence of NH2-terminal region on localization in cytosol and membranes. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[47] H. Barnes,et al. Expression and enzymatic activity of recombinant cytochrome P450 17 alpha-hydroxylase in Escherichia coli. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[48] R. Saiki,et al. A general method of in vitro preparation and specific mutagenesis of DNA fragments: study of protein and DNA interactions. , 1988, Nucleic acids research.
[49] P. Weisbeek,et al. The role of the transit peptide in the routing of precursors toward different chloroplast compartments , 1986, Cell.
[50] I. Feussner,et al. Metabolic engineering of light-driven cytochrome P450 dependent pathways into Synechocystis sp. PCC 6803. , 2016, Metabolic engineering.
[51] Jörg Bohlmann,et al. Enzymes for synthetic biology of ambroxide-related diterpenoid fragrance compounds. , 2015, Advances in biochemical engineering/biotechnology.
[52] B. Hamberger,et al. Cytochromes P450 for terpene functionalisation and metabolic engineering. , 2015, Advances in biochemical engineering/biotechnology.
[53] T. Poulos,et al. Structures of Cytochrome P450 Enzymes , 2015 .
[54] K. Clancy,et al. Influence of diterpene resin acids on feeding and growth of larch sawfly,Pristiphora erichsonii (Hartig) , 2004, Journal of Chemical Ecology.
[55] G. Howe,et al. Tomato allene oxide synthase and fatty acid hydroperoxide lyase, two cytochrome P450s involved in oxylipin metabolism, are targeted to different membranes of chloroplast envelope. , 2001, Plant physiology.
[56] H. Lichtenthaler. CHLOROPHYLL AND CAROTENOIDS: PIGMENTS OF PHOTOSYNTHETIC BIOMEMBRANES , 1987 .