Two butenolides with PPARα agonistic activity from a marine-derived Streptomyces
暂无分享,去创建一个
[1] N. Matsuura,et al. Nocapyrones: α- and γ-Pyrones from a Marine-Derived Nocardiopsis sp. , 2014, Marine drugs.
[2] R. Subramani,et al. Marine actinomycetes: an ongoing source of novel bioactive metabolites. , 2012, Microbiological research.
[3] Jeroen S. Dickschat,et al. The scent of bacteria: headspace analysis for the discovery of natural products. , 2012, Journal of natural products.
[4] Paras Gupta,et al. The peroxisome proliferator-activated receptor: A family of nuclear receptors role in various diseases , 2011, Journal of advanced pharmaceutical technology & research.
[5] Jeroen S. Dickschat,et al. Biological Activity of Volatiles from Marine and Terrestrial Bacteria , 2010, Marine drugs.
[6] Se-kwon Kim,et al. Immense Essence of Excellence: Marine Microbial Bioactive Compounds , 2010, Marine drugs.
[7] R. Yoshida,et al. Bacilosarcins A and B, novel bioactive isocoumarins with unusual heterocyclic cores from the marine-derived bacterium Bacillus subtilis , 2008 .
[8] Y. Igarashi,et al. Quinocycline Antibiotic with Antitumor Activity from Micromonospora sp . TPA 0468 , 2008 .
[9] Jeroen S. Dickschat,et al. Volatiles Released by a Streptomyces Species Isolated from the North Sea , 2005, Chemistry & biodiversity.
[10] P. Williams,et al. Marine actinomycete diversity and natural product discovery , 2004, Antonie van Leeuwenhoek.
[11] K. Shimada,et al. Chemical transformation of Leustroducsins: synthesis of Leustroducsin B , 2002 .
[12] J. Rho,et al. New lactone-containing metabolites from a marine-derived bacterium of the genus Streptomyces. , 2001, Journal of natural products.
[13] S. Kato,et al. Ligand type-specific Interactions of Peroxisome Proliferator-activated Receptor γ with Transcriptional Coactivators* , 2000, The Journal of Biological Chemistry.
[14] E. Helmke,et al. New butenolides from two marine streptomycetes. , 2000, Journal of natural products.
[15] Y. Igarashi,et al. Arisostatins A and B, new members of tetrocarcin class of antibiotics from Micromonospora sp. TP-A0316. I. Taxonomy, fermentation, isolation and biological properties. , 2000, The Journal of antibiotics.
[16] H. Ohrui,et al. Enatiomeric Separation of Branched Fatty Acids after Conversion with trans-2-(2,3-Anthracenedicarboximido)cyclohexanol, a Highly Sensitive Chiral Fluorescent Conversion Reagent. , 1999, Bioscience, biotechnology, and biochemistry.
[17] T. Kadowaki,et al. Evidence for direct binding of fatty acids and eicosanoids to human peroxisome proliferators-activated receptor alpha. , 1999, Biochemical and biophysical research communications.
[18] H. Ohrui,et al. Enantiomeric separation of carboxylic acids having chiral centers remote from the carboxyl group by labelling with a chiral fluorescent derivatization reagent , 1997 .
[19] T. Kaneda,et al. Iso- and anteiso-fatty acids in bacteria: biosynthesis, function, and taxonomic significance. , 1991, Microbiological reviews.
[20] K. Nakanishi,et al. Circular dichroic spectroscopy : exciton coupling in organic stereochemistry , 1983 .