A genome-wide analysis of nonribosomal peptide synthetase gene clusters and their peptides in a Planktothrix rubescens strain
暂无分享,去创建一个
[1] T. Sano,et al. Oscillatorin, a Chymotrypsin Inhibitor from Toxic Oscillatoria agardhii. , 2010 .
[2] Robert D. Finn,et al. InterPro: the integrative protein signature database , 2008, Nucleic Acids Res..
[3] E. Dittmann,et al. Ribosomal synthesis of tricyclic depsipeptides in bloom-forming cyanobacteria. , 2008, Angewandte Chemie.
[4] Thomas Rohrlack,et al. Recombination and selectional forces in cyanopeptolin NRPS operons from highly similar, but geographically remote Planktothrix strains , 2008, BMC Microbiology.
[5] E. Dittmann,et al. Microcyclamide Biosynthesis in Two Strains of Microcystis aeruginosa: from Structure to Genes and Vice Versa , 2008, Applied and Environmental Microbiology.
[6] T. Kristensen,et al. Comparison of Cyanopeptolin Genes in Planktothrix, Microcystis, and Anabaena Strains: Evidence for Independent Evolution within Each Genus , 2007, Applied and Environmental Microbiology.
[7] W. Doolittle,et al. Searching for species in haloarchaea , 2007, Proceedings of the National Academy of Sciences.
[8] M. Lalk,et al. Cyclic depsipeptides, ichthyopeptins A and B, from Microcystis ichthyoblabe. , 2007, Journal of natural products.
[9] E. Dittmann,et al. Biosynthesis and structure of aeruginoside 126A and 126B, cyanobacterial peptide glycosides bearing a 2-carboxy-6-hydroxyoctahydroindole moiety. , 2007, Chemistry & biology.
[10] T. Kristensen,et al. Structural analysis of a non-ribosomal halogenated cyclic peptide and its putative operon from Microcystis: implications for evolution of cyanopeptolins. , 2007, Microbiology.
[11] James R. Cole,et al. The ribosomal database project (RDP-II): introducing myRDP space and quality controlled public data , 2006, Nucleic Acids Res..
[12] Rainer Kurmayer,et al. Diversity of microcystin genotypes among populations of the filamentous cyanobacteria Planktothrix rubescens and Planktothrix agardhii , 2006, Molecular ecology.
[13] M. Welker,et al. Cyanobacterial peptides - nature's own combinatorial biosynthesis. , 2006, FEMS microbiology reviews.
[14] D. Bryant,et al. A Simple and Robust Statistical Test for Detecting the Presence of Recombination , 2006, Genetics.
[15] S. Kanaya,et al. Phylogenetic analysis of condensation domains in the nonribosomal peptide synthetases. , 2005, FEMS microbiology letters.
[16] J. Eisen,et al. Patellamide A and C biosynthesis by a microcin-like pathway in Prochloron didemni, the cyanobacterial symbiont of Lissoclinum patella. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[17] David Posada,et al. ProtTest: selection of best-fit models of protein evolution , 2005, Bioinform..
[18] J. Fastner,et al. Genetic identification of microcystin ecotypes in toxic cyanobacteria of the genus Planktothrix. , 2005, Microbiology.
[19] M. Marahiel,et al. Molecular mechanisms underlying nonribosomal peptide synthesis: approaches to new antibiotics. , 2005, Chemical reviews.
[20] E. Dittmann,et al. Inactivation of an ABC Transporter Gene, mcyH, Results in Loss of Microcystin Production in the Cyanobacterium Microcystis aeruginosa PCC 7806 , 2004, Applied and Environmental Microbiology.
[21] T. Rohrlack,et al. Cyanobacterial Protease Inhibitor Microviridin J Causes a Lethal Molting Disruption in Daphnia pulicaria , 2004, Applied and Environmental Microbiology.
[22] Makoto M. Watanabe,et al. Evidence for Recombination in the Microcystin Synthetase (mcy) Genes ofToxic Cyanobacteria Microcystisspp , 2004, Journal of Molecular Evolution.
[23] Sudhir Kumar,et al. MEGA3: Integrated software for Molecular Evolutionary Genetics Analysis and sequence alignment , 2004, Briefings Bioinform..
[24] Matthias Brunke,et al. Diversity and distribution of Microcystis (Cyanobacteria) oligopeptide chemotypes from natural communities studied by single-colony mass spectrometry. , 2004, Microbiology.
[25] R. Haselkorn,et al. Genes Coding for Hepatotoxic Heptapeptides (Microcystins) in the Cyanobacterium Anabaena Strain 90 , 2004, Applied and Environmental Microbiology.
[26] John P. Huelsenbeck,et al. MrBayes 3: Bayesian phylogenetic inference under mixed models , 2003, Bioinform..
[27] P. Hansen,et al. Isolation, Characterization, and Quantitative Analysis of Microviridin J, a New Microcystis Metabolite Toxic to Daphnia , 2003, Journal of Chemical Ecology.
[28] Kjetill S. Jakobsen,et al. Natural Variation in the Microcystin Synthetase Operon mcyABC and Impact on Microcystin Production in Microcystis Strains , 2003, Journal of bacteriology.
[29] E. Dittmann,et al. Microcystin Biosynthesis in Planktothrix: Genes, Evolution, and Manipulation , 2003, Journal of bacteriology.
[30] M. Erhard,et al. Determination of Oligopeptide Diversity within a Natural Population of Microcystis spp. (Cyanobacteria) by Typing Single Colonies by Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry , 2001, Applied and Environmental Microbiology.
[31] Yoshiyuki Sakaki,et al. Genome sequence of an industrial microorganism Streptomyces avermitilis: Deducing the ability of producing secondary metabolites , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[32] B. Neilan,et al. On the presence of peptide synthetase and polyketide synthase genes in the cyanobacterial genus Nodularia. , 2001, FEMS microbiology letters.
[33] K. Ishida,et al. Microginins, Zinc Metalloproteases Inhibitors from the Cyanobacterium Microcystis aeruginosa , 2000 .
[34] E. Dittmann,et al. Structural organization of microcystin biosynthesis in Microcystis aeruginosa PCC7806: an integrated peptide-polyketide synthetase system. , 2000, Chemistry & biology.
[35] R. Haselkorn,et al. Genes encoding synthetases of cyclic depsipeptides, anabaenopeptilides, in Anabaena strain 90 , 2000, Molecular microbiology.
[36] G. Challis,et al. Predictive, structure-based model of amino acid recognition by nonribosomal peptide synthetase adenylation domains. , 2000, Chemistry & biology.
[37] J. Majewski,et al. DNA sequence similarity requirements for interspecific recombination in Bacillus. , 1999, Genetics.
[38] T. Stachelhaus,et al. The specificity-conferring code of adenylation domains in nonribosomal peptide synthetases. , 1999, Chemistry & biology.
[39] K. Ishida,et al. Oscillapeptins A to F, serine protease inhibitors from the three strains of Oscillatoria agardhii , 1999 .
[40] K. Ishida,et al. Anabaenopeptins G and H, potent carboxypeptidase A inhibitors from the cyanobacterium Oscillatoria agardhii (NIES-595). , 1999, Bioorganic & medicinal chemistry letters.
[41] Mohamed A. Marahiel,et al. Modular Peptide Synthetases Involved in Nonribosomal Peptide Synthesis. , 1997, Chemical reviews.
[42] K. Yamaguchi,et al. Aeruginosins 205A and -B, Serine Protease Inhibitory Glycopeptides from the Cyanobacterium Oscillatoria agardhii (NIES-205) , 1997 .
[43] M. Namikoshi,et al. Bioactive compounds produced by cyanobacteria , 1996, Journal of Industrial Microbiology.
[44] T. Sano,et al. Oscillamide Y, a chymotrypsin inhibitor from toxic Oscillatoria agardhii , 1995 .
[45] W. Carmichael,et al. Two cyclic peptides, anabaenopeptins, a third group of bioactive compounds from the cyanobacteriumAnabaena flos-aquae NRC 525-17 , 1995 .
[46] E. Myers,et al. Basic local alignment search tool. , 1990, Journal of molecular biology.
[47] M. Lalk,et al. Zainuddin, E. N. et al. Cyclic depsipeptides, ichthyopeptins A and B, from Microcystis ichthyoblabe. J. Nat. Prod. 70, 1084-1088 , 2007 .
[48] B L Maidak,et al. The RDP-II (Ribosomal Database Project) , 2001, Nucleic Acids Res..
[49] Daniel H. Huson,et al. SplitsTree: analyzing and visualizing evolutionary data , 1998, Bioinform..