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Peter F Leadlay

Showing results (101-110 of 129) with videos related to

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Nature Communications|February 4, 2023
Insights into azalomycin F assembly-line contribute to evolution-guided polyketide synthase engineering and identification of intermodular recognitionGuifa Zhai, Yan Zhu, Guo Sun, et al.
The Journal of Biological Chemistry|May 1, 2010
Structural basis for the activity and substrate specificity of fluoroacetyl-CoA thioesterase FlKMarcio V B Dias, Fanglu Huang, Dimitri Y Chirgadze, et al.
ACS Chemical Biology|July 7, 2018
Directed Accumulation of Anticancer Depsipeptides by Characterization of Neoantimycins Biosynthetic Pathway and an NADPH-Dependent ReductaseYongjun Zhou, Xiao Lin, Simon R Williams, et al.
Molecular Microbiology|August 28, 2003
Analysis of the biosynthetic gene cluster for the polyether antibiotic monensin in Streptomyces cinnamonensis and evidence for the role of monB and monC genes in oxidative cyclizationMarkiyan Oliynyk, Christian B W Stark, Apoorva Bhatt, et al.
Journal of Natural Products|August 6, 2019
Sarpeptins A and B, Lipopeptides Produced by <i>Streptomyces</i> sp. KO-7888 Overexpressing a Specific SARP RegulatorWilaiwan Koomsiri, Yuki Inahashi, Kantinan Leetanasaksakul, et al.
Molecular Microbiology|June 10, 2004
Biosynthesis of the angiogenesis inhibitor borrelidin by Streptomyces parvulus Tü4055: insights into nitrile formationCarlos Olano, Steven J Moss, Alfredo F Braña, et al.
Chemistry & Biology|October 26, 2005
Molecular basis of Celmer's rules: stereochemistry of catalysis by isolated ketoreductase domains from modular polyketide synthasesAlexandros P Siskos, Abel Baerga-Ortiz, Shilpa Bali, et al.
BMC Genomics|October 9, 2008
Deciphering the genetic basis for polyketide variation among mycobacteria producing mycolactonesSacha J Pidot, Hui Hong, Torsten Seemann, et al.
Nature Catalysis|December 11, 2024
Unexpected enzyme-catalysed [4+2] cycloaddition and rearrangement in polyether antibiotic biosynthesisRory Little, Fernanda C R Paiva, Rob Jenkins, et al.
Chemistry & Biology|April 25, 2006
Evidence for the role of the monB genes in polyether ring formation during monensin biosynthesisAndrew R Gallimore, Christian B W Stark, Apoorva Bhatt, et al.
Pageof 13

Showing results (101-110 of 129) with videos related to

Sort By:
Pageof 13
Nature Communications|February 4, 2023
Insights into azalomycin F assembly-line contribute to evolution-guided polyketide synthase engineering and identification of intermodular recognitionGuifa Zhai, Yan Zhu, Guo Sun, et al.
The Journal of Biological Chemistry|May 1, 2010
Structural basis for the activity and substrate specificity of fluoroacetyl-CoA thioesterase FlKMarcio V B Dias, Fanglu Huang, Dimitri Y Chirgadze, et al.
ACS Chemical Biology|July 7, 2018
Directed Accumulation of Anticancer Depsipeptides by Characterization of Neoantimycins Biosynthetic Pathway and an NADPH-Dependent ReductaseYongjun Zhou, Xiao Lin, Simon R Williams, et al.
Molecular Microbiology|August 28, 2003
Analysis of the biosynthetic gene cluster for the polyether antibiotic monensin in Streptomyces cinnamonensis and evidence for the role of monB and monC genes in oxidative cyclizationMarkiyan Oliynyk, Christian B W Stark, Apoorva Bhatt, et al.
Journal of Natural Products|August 6, 2019
Sarpeptins A and B, Lipopeptides Produced by <i>Streptomyces</i> sp. KO-7888 Overexpressing a Specific SARP RegulatorWilaiwan Koomsiri, Yuki Inahashi, Kantinan Leetanasaksakul, et al.
Molecular Microbiology|June 10, 2004
Biosynthesis of the angiogenesis inhibitor borrelidin by Streptomyces parvulus Tü4055: insights into nitrile formationCarlos Olano, Steven J Moss, Alfredo F Braña, et al.
Chemistry & Biology|October 26, 2005
Molecular basis of Celmer's rules: stereochemistry of catalysis by isolated ketoreductase domains from modular polyketide synthasesAlexandros P Siskos, Abel Baerga-Ortiz, Shilpa Bali, et al.
BMC Genomics|October 9, 2008
Deciphering the genetic basis for polyketide variation among mycobacteria producing mycolactonesSacha J Pidot, Hui Hong, Torsten Seemann, et al.
Nature Catalysis|December 11, 2024
Unexpected enzyme-catalysed [4+2] cycloaddition and rearrangement in polyether antibiotic biosynthesisRory Little, Fernanda C R Paiva, Rob Jenkins, et al.
Chemistry & Biology|April 25, 2006
Evidence for the role of the monB genes in polyether ring formation during monensin biosynthesisAndrew R Gallimore, Christian B W Stark, Apoorva Bhatt, et al.
Pageof 13