Academic literature on the topic 'Aromatic abietane diterpenoid'

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Journal articles on the topic "Aromatic abietane diterpenoid"

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Martin, Vincent J. J., and William W. Mohn. "Genetic Investigation of the Catabolic Pathway for Degradation of Abietane Diterpenoids by Pseudomonas abietaniphilaBKME-9." Journal of Bacteriology 182, no. 13 (2000): 3784–93. http://dx.doi.org/10.1128/jb.182.13.3784-3793.2000.

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ABSTRACT We have cloned and sequenced the dit gene cluster encoding enzymes of the catabolic pathway for abietane diterpenoid degradation by Pseudomonas abietaniphila BKME-9. Thedit gene cluster is located on a 16.7-kb DNA fragment containing 13 complete open reading frames (ORFs) and 1 partial ORF. The genes ditA1A2A3 encode the α and β subunits and the ferredoxin of the dioxygenase which hydroxylates 7-oxodehydroabietic acid to 7-oxo-11,12-dihydroxy-8,13-abietadien acid. The dioxygenase mutant strain BKME-941 (ditA1::Tn5) did not grow on nonaromatic abietanes, and transformed palustric and a
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González, Miguel A. "Aromatic abietane diterpenoids: their biological activity and synthesis." Natural Product Reports 32, no. 5 (2015): 684–704. http://dx.doi.org/10.1039/c4np00110a.

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González, Miguel A. "Aromatic abietane diterpenoids: total syntheses and synthetic studies." Tetrahedron 71, no. 13 (2015): 1883–908. http://dx.doi.org/10.1016/j.tet.2015.01.058.

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Gonzalez, Miguel A. "ChemInform Abstract: Aromatic Abietane Diterpenoids: Total Syntheses and Synthetic Studies." ChemInform 46, no. 19 (2015): no. http://dx.doi.org/10.1002/chin.201519313.

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González, Miguel A. "Synthetic derivatives of aromatic abietane diterpenoids and their biological activities." European Journal of Medicinal Chemistry 87 (November 2014): 834–42. http://dx.doi.org/10.1016/j.ejmech.2014.10.023.

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Li, Xin, and Rich G. Carter. "Total Syntheses of Aromatic Abietane Diterpenoids Utilizing Advances in the Pummerer Rearrangement." Organic Letters 20, no. 18 (2018): 5546–49. http://dx.doi.org/10.1021/acs.orglett.8b02060.

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Gonzalez, Miguel A. "ChemInform Abstract: Synthetic Derivatives of Aromatic Abietane Diterpenoids and Their Biological Activities." ChemInform 46, no. 2 (2014): no. http://dx.doi.org/10.1002/chin.201502275.

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Salamatin, Arthur A., Alyona S. Khaliullina, and Ramil Sh Khaziev. "Extraction of aromatic abietane diterpenoids from Salvia officinalis leaves by petroleum ether: Data resolution analysis." Industrial Crops and Products 143 (January 2020): 111909. http://dx.doi.org/10.1016/j.indcrop.2019.111909.

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Ramírez, Jorge, Gianluca Gilardoni, Matteo Radice, and Vladimir Morocho. "Phytochemistry, Bioactivity, and Ethnopharmacology of the Genus Lepechinia Willd. (Lamiaceae): A Review." Plants 13, no. 4 (2024): 481. http://dx.doi.org/10.3390/plants13040481.

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The genus Lepechinia (Lamiaceae) involves several aromatic shrubs that are distributed only in the American continent, inhabiting mountain areas, mainly in the Andean region of South America. Based on the PRISMA approach, we selected and critically analyzed 48 research articles. From a phytochemical point of view, most of the secondary metabolites reported in Lepechinia spp. are terpenes and terpenoids, with a few exceptions comprising flavonoids and other shikimic acid derivatives. On the one hand, sesquiterpenoids of the guajane, aromadendrane, eudesmane, and cadinane groups are characterist
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Yoshikawa, Kazuko, Naoki Kokudo, Masami Tanaka, et al. "Novel Abietane Diterpenoids and Aromatic Compounds from Cladonia rangiferina and Their Antimicrobial Activity against Antibiotics Resistant Bacteria." CHEMICAL & PHARMACEUTICAL BULLETIN 56, no. 1 (2008): 89–92. http://dx.doi.org/10.1248/cpb.56.89.

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Dissertations / Theses on the topic "Aromatic abietane diterpenoid"

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Lefèvre, Antoine. "Oxydation électrochimique de fonctions 1,3-dicarbonylées pour la synthèse de squelettes de diterpénoïdes de type abiétanes aromatiques par bicyclisation et de γ-lactones par couplage avec des styrènes". Electronic Thesis or Diss., université Paris-Saclay, 2024. http://www.theses.fr/2024UPASF084.

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Les abiétanes diterpénoïdes aromatiques sont une famille de composés naturels qui sont suspectés d'avoir de nombreuses vertus thérapeutiques. C'est pourquoi, les chimistes organiciens ont cherché à développer différentes stratégies pour atteindre leurs squelettes. L'une d'entre elles implique la polycyclisation de polyènes par oxydation de β-céto-ester avec du manganèse triacétate en quantité surstoechiométrique dans l'acide acétique. Or, ces dernières années, l'électrosynthèse est apparue comme un outil puissant permettant le développement d'oxydation en utilisant des quantités catalytiques d
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