Basidiomycete non-reducing polyketide synthases function independently of SAT domains
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D. Hoffmeister | G. Lackner | Markus Gressler | Jacob M. Wurlitzer | Malik Rakhmanov | Nikolai A. Löhr
[1] D. Hoffmeister,et al. The Ketosynthase Domain Controls Chain Length in Mushroom Oligocyclic Polyketide Synthases , 2022, Chembiochem : a European journal of chemical biology.
[2] Qingpei Liu,et al. Didepside Formation by the Nonreducing Polyketide Synthase Preu6 of Preussia isomera Requires Interaction of Starter Acyl Transferase and Thioesterase Domains. , 2022, Angewandte Chemie.
[3] T. J. Simpson,et al. The ‘emodin family’ of fungal natural products–amalgamating a century of research with recent genomics-based advances , 2022, Natural product reports.
[4] E. Kothe,et al. Blue Light-Dependent Pre-mRNA Splicing Controls Pigment Biosynthesis in the Mushroom Terana caerulea , 2022, Microbiology spectrum.
[5] J. den Hertog,et al. Evolution-Informed Discovery of the Naphthalenone Biosynthetic Pathway in Fungi , 2022, mBio.
[6] Z. Deng,et al. The Streptomyces viridochromogenes product template domain represents an evolutionary intermediate between dehydratase and aldol cyclase of type I polyketide synthases , 2022, Communications Biology.
[7] R. Cox,et al. Curiouser and curiouser: progress in understanding the programming of iterative highly-reducing polyketide synthases. , 2022, Natural product reports.
[8] C. M. Jäger,et al. Characterisation of ascocorynin biosynthesis in the purple jellydisc fungus Ascocoryne sarcoides , 2022, Fungal biology and biotechnology.
[9] Michael Müller,et al. Unprecedented Mushroom Polyketide Synthases Produce the Universal Anthraquinone Precursor , 2022, Angewandte Chemie.
[10] Wonyong Kim,et al. Linking a Gene Cluster to Atranorin, a Major Cortical Substance of Lichens, through Genetic Dereplication and Heterologous Expression , 2021, mBio.
[11] R. Cox,et al. Biosynthesis of 6‐Hydroxymellein Requires a Collaborating Polyketide Synthase‐like Enzyme , 2021, Angewandte Chemie.
[12] Tim Schäfer,et al. Mind the mushroom: natural product biosynthetic genes and enzymes of Basidiomycota. , 2021, Natural product reports.
[13] Michael Müller,et al. Regio- and stereoselective intermolecular phenol coupling enzymes in secondary metabolite biosynthesis. , 2020, Natural product reports.
[14] Silvio C. E. Tosatto,et al. Pfam: The protein families database in 2021 , 2020, Nucleic Acids Res..
[15] S. Pidot,et al. Natural product discovery through microbial genome mining. , 2020, Current opinion in chemical biology.
[16] Michael Müller,et al. Enzymatic Formation of Rufoschweinitzin, a Binaphthalene from the Basidiomycete Cortinarius rufoolivaceus , 2020, Chembiochem : a European journal of chemical biology.
[17] R. Ueoka,et al. Characterization of an Orphan Type III Polyketide Synthase Conserved in Uncultivated “Entotheonella” Sponge Symbionts , 2019, Chembiochem : a European journal of chemical biology.
[18] M. Nett,et al. Cross-Chemistry Leads to Product Diversity from Atromentin Synthetases in Aspergilli from Section Nigri. , 2019, Cell chemical biology.
[19] R. Cox,et al. Strobilurin biosynthesis in Basidiomycete fungi , 2018, Nature Communications.
[20] Sergey Koren,et al. De novo assembly of haplotype-resolved genomes with trio binning , 2018, Nature Biotechnology.
[21] Qiang Li,et al. The Genome Sequences of 90 Mushrooms , 2018, Scientific Reports.
[22] Sudhir Kumar,et al. MEGA X: Molecular Evolutionary Genetics Analysis across Computing Platforms. , 2018, Molecular biology and evolution.
[23] M. Brock,et al. ATNT: an enhanced system for expression of polycistronic secondary metabolite gene clusters in Aspergillus niger , 2017, Fungal Biology and Biotechnology.
[24] A. von Haeseler,et al. UFBoot2: Improving the Ultrafast Bootstrap Approximation , 2017, bioRxiv.
[25] A. Driessen,et al. Mechanism and regulation of sorbicillin biosynthesis by Penicillium chrysogenum , 2017, Microbial biotechnology.
[26] Thomas K. F. Wong,et al. ModelFinder: Fast Model Selection for Accurate Phylogenetic Estimates , 2017, Nature Methods.
[27] S. Koren,et al. Canu: scalable and accurate long-read assembly via adaptive k-mer weighting and repeat separation , 2016, bioRxiv.
[28] S. Tzean,et al. Identification of the orsellinic acid synthase PKS63787 for the biosynthesis of antroquinonols in Antrodia cinnamomea , 2017, Applied Microbiology and Biotechnology.
[29] S. Morimoto,et al. A Novel Class of Plant Type III Polyketide Synthase Involved in Orsellinic Acid Biosynthesis from Rhododendron dauricum , 2016, Front. Plant Sci..
[30] Francesca Giordano,et al. Oxford Nanopore MinION Sequencing and Genome Assembly , 2016, Genom. Proteom. Bioinform..
[31] R. Cox,et al. Elucidation of cladofulvin biosynthesis reveals a cytochrome P450 monooxygenase required for anthraquinone dimerization , 2016, Proceedings of the National Academy of Sciences.
[32] S. Tzean,et al. pks63787, a Polyketide Synthase Gene Responsible for the Biosynthesis of Benzenoids in the Medicinal Mushroom Antrodia cinnamomea. , 2016, Journal of natural products.
[33] R. Cox,et al. Identification of genes encoding squalestatin S1 biosynthesis and in vitro production of new squalestatin analogues. , 2016, Chemical communications.
[34] Arndt von Haeseler,et al. W-IQ-TREE: a fast online phylogenetic tool for maximum likelihood analysis , 2016, Nucleic Acids Res..
[35] J. Vederas,et al. Production of New Cladosporin Analogues by Reconstitution of the Polyketide Synthases Responsible for the Biosynthesis of this Antimalarial Agent. , 2016, Angewandte Chemie.
[36] Tina Koestler,et al. Tricholoma vaccinum host communication during ectomycorrhiza formation. , 2015, FEMS microbiology ecology.
[37] N. Keller,et al. Evolution of Chemical Diversity in a Group of Non-Reduced Polyketide Gene Clusters: Using Phylogenetics to Inform the Search for Novel Fungal Natural Products , 2015, Toxins.
[38] J. Vederas,et al. Biochemical and Structural Basis for Controlling Chemical Modularity in Fungal Polyketide Biosynthesis. , 2015, Journal of the American Chemical Society.
[39] Zheng Zhang,et al. Bioinformatical Analysis of the Sequences, Structures and Functions of Fungal Polyketide Synthase Product Template Domains , 2015, Scientific Reports.
[40] P. Hortschansky,et al. A new high-performance heterologous fungal expression system based on regulatory elements from the Aspergillus terreus terrein gene cluster , 2015, Front. Microbiol..
[41] Bernard Henrissat,et al. Convergent losses of decay mechanisms and rapid turnover of symbiosis genes in mycorrhizal mutualists , 2015, Nature Genetics.
[42] Wei Xu,et al. Methylation-Dependent Acyl Transfer between Polyketide Synthase and Nonribosomal Peptide Synthetase Modules in Fungal Natural Product Biosynthesis , 2014, Organic letters.
[43] B. Oakley,et al. Rational Domain Swaps Reveal Insights about Chain Length Control by Ketosynthase Domains in Fungal Nonreducing Polyketide Synthases , 2014, Organic letters.
[44] R. Cox,et al. Oxidative dearomatisation: the key step of sorbicillinoid biosynthesis , 2013, Chemical science.
[45] D. Hoffmeister,et al. Assembly of melleolide antibiotics involves a polyketide synthase with cross-coupling activity. , 2013, Chemistry & biology.
[46] C. Townsend,et al. Combinatorial domain swaps provide insights into the rules of fungal polyketide synthase programming and the rational synthesis of non-native aromatic products. , 2013, Angewandte Chemie.
[47] D. Hoffmeister,et al. Genome mining reveals the evolutionary origin and biosynthetic potential of basidiomycete polyketide synthases. , 2012, Fungal genetics and biology : FG & B.
[48] A. Keatinge-Clay,et al. The structures of type I polyketide synthases. , 2012, Natural product reports.
[49] C. Townsend,et al. Demonstration of Starter Unit Interprotein Transfer from a Fatty Acid Synthase to a Multidomain, Nonreducing Polyketide Synthase , 2012, Chembiochem : a European journal of chemical biology.
[50] Shu-Lin Chang,et al. Illuminating the diversity of aromatic polyketide synthases in Aspergillus nidulans. , 2012, Journal of the American Chemical Society.
[51] N. Kelleher,et al. Interrogation of global active site occupancy of a fungal iterative polyketide synthase reveals strategies for maintaining biosynthetic fidelity. , 2012, Journal of the American Chemical Society.
[52] H. Moriya,et al. Establishing a New Methodology for Genome Mining and Biosynthesis of Polyketides and Peptides through Yeast Molecular Genetics , 2012, Chembiochem : a European journal of chemical biology.
[53] C. Hertweck,et al. Multifactorial induction of an orphan PKS-NRPS gene cluster in Aspergillus terreus. , 2011, Chemistry & biology.
[54] C. Townsend,et al. New insights into the formation of fungal aromatic polyketides , 2010, Nature Reviews Microbiology.
[55] J. Vederas,et al. Insights into Radicicol Biosynthesis via Heterologous Synthesis of Intermediates and Analogs* , 2010, The Journal of Biological Chemistry.
[56] Yanran Li,et al. Classification, prediction, and verification of the regioselectivity of fungal polyketide synthase product template domains. , 2010, The Journal of biological chemistry.
[57] Jin-Ming Gao,et al. Structure and absolute configuration of toxic polyketide pigments from the fruiting bodies of the fungus Cortinarius rufo-olivaceus. , 2010, Organic & biomolecular chemistry.
[58] J. Vederas,et al. Enzymatic synthesis of resorcylic acid lactones by cooperation of fungal iterative polyketide synthases involved in hypothemycin biosynthesis. , 2010, Journal of the American Chemical Society.
[59] Susana P. Gaudêncio,et al. Sequence-Based Analysis of Secondary-Metabolite Biosynthesis in Marine Actinobacteria , 2010, Applied and Environmental Microbiology.
[60] Clay C C Wang,et al. Characterization of the Aspergillus nidulans Monodictyphenone Gene Cluster , 2010, Applied and Environmental Microbiology.
[61] L. Du,et al. PKS and NRPS release mechanisms. , 2010, Natural product reports.
[62] Jin-Ming Gao,et al. Rufoolivacin B, a novel polyketide pigment from the fruiting bodies of the fungus Cortinarius rufo-olivaceus (basidiomycetes) , 2009 .
[63] Jason W. Labonte,et al. Structural basis for biosynthetic programming of fungal aromatic polyketide cyclization , 2009, Nature.
[64] S. Horinouchi,et al. Physically discrete beta-lactamase-type thioesterase catalyzes product release in atrochrysone synthesis by iterative type I polyketide synthase. , 2009, Chemistry & biology.
[65] C. Hertweck,et al. The biosynthetic logic of polyketide diversity. , 2009, Angewandte Chemie.
[66] A. Davidson,et al. A gene cluster containing two fungal polyketide synthases encodes the biosynthetic pathway for a polyketide, asperfuranone, in Aspergillus nidulans. , 2009, Journal of the American Chemical Society.
[67] Shuhao Wang,et al. Functional characterization of the biosynthesis of radicicol, an Hsp90 inhibitor resorcylic acid lactone from Chaetomium chiversii. , 2008, Chemistry & biology.
[68] R. Reid,et al. Genes for the Biosynthesis of the Fungal Polyketides Hypothemycin from Hypomyces subiculosus and Radicicol from Pochonia chlamydosporia , 2008, Applied and Environmental Microbiology.
[69] C. Townsend,et al. Synthetic Strategy of Nonreducing Iterative Polyketide Synthases and the Origin of the Classical “Starter‐Unit Effect” , 2008, Chembiochem : a European journal of chemical biology.
[70] Kenji Watanabe,et al. A polyketide macrolactone synthase from the filamentous fungus Gibberella zeae , 2008, Proceedings of the National Academy of Sciences.
[71] C. Townsend,et al. Starter unit specificity directs genome mining of polyketide synthase pathways in fungi. , 2008, Bioorganic chemistry.
[72] Shiou-Chuan Tsai,et al. The type I fatty acid and polyketide synthases: a tale of two megasynthases. , 2007, Natural product reports.
[73] Clay C C Wang,et al. Enzymatic synthesis of aromatic polyketides using PKS4 from Gibberella fujikuroi. , 2007, Journal of the American Chemical Society.
[74] R. Cox,et al. Polyketides, proteins and genes in fungi: programmed nano-machines begin to reveal their secrets. , 2007, Organic & biomolecular chemistry.
[75] D. Hoffmeister,et al. Natural products of filamentous fungi: enzymes, genes, and their regulation. , 2007, Natural product reports.
[76] Andriy Luzhetskyy,et al. Type II polyketide synthases: gaining a deeper insight into enzymatic teamwork. , 2007, Natural product reports.
[77] T. Kutchan,et al. A polyketide synthase of Plumbago indica that catalyzes the formation of hexaketide pyrones , 2007, The FEBS journal.
[78] Daniel W. Udwary,et al. Identification of a starter unit acyl-carrier protein transacylase domain in an iterative type I polyketide synthase , 2006, Proceedings of the National Academy of Sciences.
[79] R. Bradshaw,et al. A Polyketide Synthase Gene Required for Biosynthesis of the Aflatoxin-like Toxin, Dothistromin , 2006, Mycopathologia.
[80] Robert C. Edgar,et al. MUSCLE: a multiple sequence alignment method with reduced time and space complexity , 2004, BMC Bioinformatics.
[81] Burkhard Morgenstern,et al. AUGUSTUS: a web server for gene finding in eukaryotes , 2004, Nucleic Acids Res..
[82] John E. Linz,et al. Clustered Pathway Genes in Aflatoxin Biosynthesis , 2004, Applied and Environmental Microbiology.
[83] S. Kroken,et al. Phylogenomic analysis of type I polyketide synthase genes in pathogenic and saprobic ascomycetes , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[84] Gitanjali Yadav,et al. A New Family of Type III Polyketide Synthases in Mycobacterium tuberculosis* , 2003, Journal of Biological Chemistry.
[85] P. Leadlay,et al. A chain initiation factor common to both modular and aromatic polyketide synthases , 1999, Nature.
[86] Thomas L. Madden,et al. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. , 1997, Nucleic acids research.
[87] K. Gomi,et al. Cloning of the polyketide synthase gene atX from Aspergillus terreus and its identification as the 6-Methylsalicylic acid synthase gene by heterologous expression , 1996, Molecular and General Genetics MGG.
[88] T. C. Nesbitt,et al. Twenty-five coregulated transcripts define a sterigmatocystin gene cluster in Aspergillus nidulans. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[89] J. H. Yu,et al. Sterigmatocystin biosynthesis in Aspergillus nidulans requires a novel type I polyketide synthase , 1995, Journal of bacteriology.
[90] S. Ripka,et al. The multifunctional 6-methylsalicylic acid synthase gene of Penicillium patulum. Its gene structure relative to that of other polyketide synthases. , 1990, European journal of biochemistry.
[91] C. Townsend,et al. Hexanoate as a starter unit in polyketide biosynthesis , 1984 .
[92] W. Steglich,et al. Isolation of flavomannin-6,6′-dimethyl ether and one of its racemates from higher fungi , 1972 .
[93] D. Hoffmeister,et al. Biochemical and genetic basis of orsellinic acid biosynthesis and prenylation in a stereaceous basidiomycete. , 2017, Fungal genetics and biology : FG & B.
[94] Kenji Watanabe,et al. S 1 Supporting Information Identification and Characterization of the Chaetoviridin and Chaetomugilin Gene Cluster in Chaetomium globosum Reveal Dual Functions of an Iterative Highly-Reducing Polyketide Synthase , 2012 .
[95] Arne Skerra,et al. The Strep-tag system for one-step purification and high-affinity detection or capturing of proteins , 2007, Nature Protocols.
[96] Hilde van der Togt,et al. Publisher's Note , 2003, J. Netw. Comput. Appl..
[97] J. Staunton,et al. Polyketide biosynthesis: a millennium review. , 2001, Natural product reports.
[98] M. Gill,et al. Pigments of fungi (Macromycetes). , 1987, Fortschritte der Chemie organischer Naturstoffe = Progress in the chemistry of organic natural products. Progres dans la chimie des substances organiques naturelles.