Antimicrobial Spirotetronate Metabolites from Marine-Derived Micromonospora harpali SCSIO GJ089.
暂无分享,去创建一个
Yucheng Gu | J. Ju | Xiangcheng Zhu | Hongbo Huang | Y. Duan | Wenjuan Ding | Chun Gui | Shanwen Zhang
[1] H. Ikeda,et al. 29-Deoxymaklamicin, a new maklamicin analogue produced by a genetically engineered strain of Micromonospora sp. NBRC 110955. , 2015, Journal of bioscience and bioengineering.
[2] Zhenhua Tian,et al. An enzymatic [4+2] cyclization cascade creates the pentacyclic core of pyrroindomycins. , 2015, Nature chemical biology.
[3] J. Li,et al. Cytotoxic and Antibacterial Angucycline- and Prodigiosin- Analogues from the Deep-Sea Derived Streptomyces sp. SCSIO 11594 , 2015, Marine drugs.
[4] E. Theodorakis,et al. Spirotetronate Polyketides as Leads in Drug Discovery , 2014, Journal of natural products.
[5] Shenmin Zhang,et al. New anti-infective cycloheptadepsipeptide congeners and absolute stereochemistry from the deep sea-derived Streptomyces drozdowiczii SCSIO 10141 , 2014 .
[6] P. Leadlay,et al. Recent advances in the field of bioactive tetronates. , 2014, Natural product reports.
[7] J. Ju,et al. Cyclic Hexapeptides from the Deep South China Sea-Derived Streptomyces scopuliridis SCSIO ZJ46 Active Against Pathogenic Gram-Positive Bacteria. , 2014, Journal of natural products.
[8] J. Ju,et al. Cytotoxic and antibacterial marfuraquinocins from the deep South China Sea-derived Streptomyces niveus SCSIO 3406. , 2013, Journal of natural products.
[9] W. Tao,et al. Biosynthesis of tetronate antibiotics: A growing family of natural products with broad biological activities , 2013, Science China Chemistry.
[10] Yiguang Zhu,et al. Dissecting glycosylation steps in lobophorin biosynthesis implies an iterative glycosyltransferase. , 2013, Organic letters.
[11] J. Nodwell,et al. Deglycosylation as a mechanism of inducible antibiotic resistance revealed using a global relational tree for one-component regulators. , 2013, Chemistry & biology.
[12] J. Ju,et al. Marthiapeptide A, an anti-infective and cytotoxic polythiazole cyclopeptide from a 60 L scale fermentation of the deep sea-derived Marinactinospora thermotolerans SCSIO 00652. , 2012, Journal of natural products.
[13] Long-Fei Wu,et al. Quartromicin biosynthesis: two alternative polyketide chains produced by one polyketide synthase assembly line. , 2012, Chemistry & biology.
[14] Wen Liu,et al. Insights into pyrroindomycin biosynthesis reveal a uniform paradigm for tetramate/tetronate formation. , 2012, Journal of the American Chemical Society.
[15] T. Iida,et al. Nomimicin, a new spirotetronate-class polyketide from an actinomycete of the genus Actinomadura , 2012, The Journal of Antibiotics.
[16] Caiguo Huang,et al. Cytotoxic angucycline class glycosides from the deep sea actinomycete Streptomyces lusitanus SCSIO LR32. , 2012, Journal of natural products.
[17] Haibo Zhang,et al. Lobophorins E and F, new spirotetronate antibiotics from a South China Sea-derived Streptomyces sp. SCSIO 01127 , 2011, The Journal of Antibiotics.
[18] Y. Igarashi,et al. Maklamicin, an antibacterial polyketide from an endophytic Micromonospora sp. , 2011, Journal of natural products.
[19] Wen Liu,et al. Insights into bacterial 6-methylsalicylic acid synthase and its engineering to orsellinic acid synthase for spirotetronate generation. , 2010, Chemistry & biology.
[20] Wen Liu,et al. Cloning and Characterization of the Tetrocarcin A Gene Cluster from Micromonospora chalcea NRRL 11289 Reveals a Highly Conserved Strategy for Tetronate Biosynthesis in Spirotetronate Antibiotics , 2008, Journal of bacteriology.
[21] G. Challis,et al. Role and substrate specificity of the Streptomyces coelicolor RedH enzyme in undecylprodiginine biosynthesis. , 2008, Chemical communications.
[22] Charles E Melançon,et al. Elucidation of the kijanimicin gene cluster: insights into the biosynthesis of spirotetronate antibiotics and nitrosugars. , 2007, Journal of the American Chemical Society.
[23] Wen Liu,et al. Genetic characterization of the chlorothricin gene cluster as a model for spirotetronate antibiotic biosynthesis. , 2006, Chemistry & biology.
[24] Y. Kan,et al. Arisostatins A and B, new members of tetrocarcin class of antibiotics from Micromonospora sp. TP-A0316. II. Structure determination. , 2000, The Journal of antibiotics.
[25] P. Jensen,et al. Lobophorins A and B, new antiinflammatory macrolides produced by a tropical marine bacterium. , 1999, Bioorganic & medicinal chemistry letters.
[26] K. Furihata,et al. Antibiotic AC6H, a new component of tetrocarcin group antibiotics. , 1993, The Journal of antibiotics.
[27] T. Tamaoki,et al. Tetrocarcins, new antitumor antibiotics. 3. Antitumor activity of tetrocarcin A. , 1982, Journal of antibiotics (Tokyo. 1968).
[28] K. MallamsA,et al. キジャニマイシン II キジャニマイシンの構造および絶対立体化学 , 1981 .
[29] T. Tamaoki,et al. TETROCARCINS, NOVEL ANTITUMOR ANTIBIOTICS , 1980 .
[30] T. Tamaoki,et al. Tetrocarcins, novel antitumor antibiotics. II. Isolation, characterization and antitumor activity. , 1980, The Journal of antibiotics.
[31] T. Tamaoki,et al. Novel antitumor antibiotics, tetrocarcins. , 1980, The Journal of antibiotics.
[32] M. Uramoto,et al. A new antibiotic, antlermicin A. , 1980, The Journal of antibiotics.