Structural insights into dehydratase substrate selection for the borrelidin and fluvirucin polyketide synthases

scientific article published on 21 May 2019

Structural insights into dehydratase substrate selection for the borrelidin and fluvirucin polyketide synthases is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1007/S10295-019-02189-Z
P932PMC publication ID6697708
P698PubMed publication ID31115703

P50authorJay KeaslingQ1684333
Paul D. AdamsQ30504798
Héctor García MartínQ55175558
Tristan de RondQ60057495
Mitchell G ThompsonQ83533575
Jesus F. BarajasQ87846476
Nathan J HillsonQ89135202
Edward E BaidooQ114370352
Veronica T BenitesQ117215992
P2093author name stringBo Pang
Jose H Pereira
Tyler W H Backman
Ryan P McAndrew
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Identification of the Fluvirucin B2 (Sch 38518) Biosynthetic Gene Cluster from Actinomadura fulva subsp. indica ATCC 53714: substrate Specificity of the β-Amino Acid Selective Adenylating Enzyme FlvN.Q54252113
Biochemical Characterization of β-Amino Acid Incorporation in Fluvirucin B BiosynthesisQ57177160
Intermediates of rifamycin polyketide synthase produced by an Amycolatopsis mediterranei mutant with inactivated rifF geneQ73337124
Molecular Basis for Olefin Rearrangement in the Gephyronic Acid Polyketide SynthaseQ91282039
pH-Rate profiles establish that polyketide synthase dehydratase domains utilize a single-base mechanismQ93237912
P433issue8
P304page(s)1225-1235
P577publication date2019-05-21
P1433published inJournal of Industrial Microbiology & BiotechnologyQ1709847
P1476titleStructural insights into dehydratase substrate selection for the borrelidin and fluvirucin polyketide synthases
P478volume46

Reverse relations

Q97425379Site directed mutagenesis as a precision tool to enable synthetic biology with engineered modular polyketide synthasescites workP2860

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