Antibacterial Gilvocarcin-Type Aryl-C-Glycosides from a Soil-Derived Streptomyces Species.
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Weiming Zhu | Peng Fu | Jiwen Sun | Rui Ma | Shan Cheng
[1] Chuan‐Kun Ran,et al. Electrochemical Ring-Opening Dicarboxylation of Strained Carbon-Carbon Single Bonds with CO2: Facile Synthesis of Diacids and Derivatization into Polyesters. , 2022, Journal of the American Chemical Society.
[2] G. Mancuso,et al. Bacterial Antibiotic Resistance: The Most Critical Pathogens , 2021, Pathogens.
[3] Jie Yuan,et al. l-Tryptophan Induces a Marine-Derived Fusarium sp. to Produce Indole Alkaloids with Activity against the Zika Virus. , 2020, Journal of natural products.
[4] Jikai Liu,et al. Trichothecrotocins D-L, Antifungal Agents from a Potato-Associated Trichothecium crotocinigenum. , 2020, Journal of natural products.
[5] A. Carroll,et al. Orthoscuticellines A-E, β-Carboline Alkaloids from the Bryozoan Orthoscuticella ventricosa Collected in Australia. , 2020, Journal of natural products.
[6] Eirini Christaki,et al. Antimicrobial Resistance in Bacteria: Mechanisms, Evolution, and Persistence , 2019, Journal of Molecular Evolution.
[7] B. Sharma-Kuinkel,et al. Methicillin-resistant Staphylococcus aureus: an overview of basic and clinical research , 2019, Nature Reviews Microbiology.
[8] Ariel M. Sarotti,et al. Beyond DP4: an Improved Probability for the Stereochemical Assignment of Isomeric Compounds using Quantum Chemical Calculations of NMR Shifts. , 2015, The Journal of organic chemistry.
[9] Weiming Zhu,et al. Cyanogramide with a new spiro[indolinone-pyrroloimidazole] skeleton from Actinoalloteichus cyanogriseus. , 2014, Organic letters.
[10] K. Ishida,et al. Total Synthesis of the Antitumor Natural Product Polycarcin V and Evaluation of Its DNA Binding Profile , 2014, Organic letters.
[11] J. Rohr,et al. Baeyer-Villiger C-C bond cleavage reaction in gilvocarcin and jadomycin biosynthesis. , 2012, Journal of the American Chemical Society.
[12] Penchal Reddy Nandaluru,et al. An inverse electron demand Diels-Alder-based total synthesis of defucogilvocarcin V and some C-8 analogues. , 2012, The Journal of organic chemistry.
[13] J. Rohr,et al. Roles of the synergistic reductive O-methyltransferase GilM and of O-methyltransferase GilMT in the gilvocarcin biosynthetic pathway. , 2012, Journal of the American Chemical Society.
[14] Weiming Zhu,et al. Gilvocarcin HE: a new polyketide glycoside from Streptomyces sp , 2012, The Journal of Antibiotics.
[15] Chunli Yang,et al. Streptocarbazoles A and B, two novel indolocarbazoles from the marine-derived actinomycete strain Streptomyces sp. FMA. , 2012, Organic letters.
[16] J. Rohr,et al. Enzymatic total synthesis of defucogilvocarcin M and its implications for gilvocarcin biosynthesis. , 2012, Angewandte Chemie.
[17] X. Yao,et al. Quassidines A-D, bis-beta-carboline alkaloids from the stems of Picrasma quassioides. , 2010, Journal of Natural Products.
[18] J. Rohr,et al. GilR, an Unusual Lactone‐Forming Enzyme Involved in Gilvocarcin Biosynthesis , 2009, Chembiochem : a European journal of chemical biology.
[19] R. Hancock,et al. Agar and broth dilution methods to determine the minimal inhibitory concentration (MIC) of antimicrobial substances , 2008, Nature Protocols.
[20] J. Rohr,et al. Multi-oxygenase complexes of the gilvocarcin and jadomycin biosyntheses. , 2007, Journal of the American Chemical Society.
[21] L. Zaika,et al. SPICES AND HERBS: THEIR ANTIMICROBIAL ACTIVITY AND ITS DETERMINATION , 2007 .
[22] P. Stephens,et al. Determination of the absolute configurations of natural products via density functional theory calculations of vibrational circular dichroism, electronic circular dichroism and optical rotation: the schizozygane alkaloid schizozygine. , 2007, The Journal of organic chemistry.
[23] S. Kondo,et al. Complexing properties of two benzocrown-ether moieties arranged at a cyclobutane ring system , 2004 .
[24] J. Rohr,et al. The complete gene cluster of the antitumor agent gilvocarcin V and its implication for the biosynthesis of the gilvocarcins. , 2003, Journal of the American Chemical Society.
[25] T. Hosoya,et al. Total synthesis of the gilvocarcins , 1994 .
[26] T. Eguchi,et al. Chemical transformation of gilvocarcin V. Modification of the side-chain. , 1993, The Journal of antibiotics.
[27] T. Hosoya,et al. Total Synthesis and Absolute Stereochemical Assignment of Gilvocarcin M. , 1992 .
[28] L. McGee,et al. Gilvocarcin photobiology. Isolation and characterization of the DNA photoadduct , 1990 .
[29] M. Peak,et al. Photosensitized DNA breaks and DNA-to-protein crosslinks induced in human cells by antitumor agent gilvocarcin V. , 1988, Chemico-biological interactions.
[30] R. Elespuru,et al. Activation of antitumor agent gilvocarcins by visible light. , 1984, Science.
[31] T. Tamaoki,et al. Gilvocarcins, new antitumor antibiotics. 4. Mode of action. , 1982, The Journal of antibiotics.
[32] M. Greenstein,et al. Studies on the mechanism of actin of gilvocarcin V and chrysomycin A. , 1982, The Journal of antibiotics.
[33] J. Clardy,et al. Antitumor agents from Streptomyces anandii: gilvocarcins V, M and E. , 1981, The Journal of antibiotics.
[34] M. Morimoto,et al. Gilvocarcins, new antitumor antibiotics. 3. Antitumor activity. , 1981, The Journal of antibiotics.
[35] H. Nakano,et al. GILVOCARCINS, NEW ANTITUMOR ANTIBIOTICS , 1981 .
[36] F. Tomita,et al. Gilvocarcins, new antitumor antibiotics. 2. Structural elucidation. , 1981, The Journal of antibiotics.