Literature DB >> 17240975

Biosynthetic characterization and chemoenzymatic assembly of the cryptophycins. Potent anticancer agents from cyanobionts.

Nathan A Magarvey1, Zachary Q Beck, Trimurtulu Golakoti, Yousong Ding, Udo Huber, Thomas K Hemscheidt, Dafna Abelson, Richard E Moore, David H Sherman.   

Abstract

The lichen cyanobacterial symbiont Nostoc sp. ATCC 53789 and its close relative Nostoc sp. GSV 224 are prolific producers of natural products, generating >25 derivatives of the cryptophycin class of secondary metabolites. Cryptophycin 1, the prototypic member of the class, is a potent tubulin-depolymerizing agent, and several semisynthetic derivatives are being developed as anticancer therapeutics. Here we provide a detailed characterization of the cryptophycin metabolic pathway by stable-isotope labeling experiments and through cloning, sequencing, and annotating the cryptophycin biosynthetic gene cluster. A comparative secondary metabolomic analysis based on polyketide (PK)/non-ribosomal peptide gene clusters from the phylogenetically related, non-cryptophycin producing cycad symbiont, Nostoc punctiforme ATCC 29133, was used to identify the cryptophycin biosynthetic genes that encompass approximately 40 kb within the lichen symbiont Nostoc sp. ATCC 53789 genome. The pathway encodes a collinear set of enzymes, including three modular PK synthases, two non-ribosomal peptide synthetase modules, and an integrated adenylation/ketoreductase didomain for elaboration of the leucic acid subunit. In addition, genes encoding key tailoring steps, including a FAD-dependent halogenase and CYP450 epoxidase, were identified. The inherent flexibility of the cryptophycin biosynthetic enzymes was harnessed to generate a suite of new analogues by altering the pool of PK starter units and selected amino acid extender groups. Characterization of the cryptophycin CYP450 enabled development of the first stereospecific synthesis of cryptophycin 2, through a tandem chemoenzymatic synthesis from the natural seco-cryptophycin 4 chain elongation intermediate.

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Year:  2006        PMID: 17240975     DOI: 10.1021/cb6004307

Source DB:  PubMed          Journal:  ACS Chem Biol        ISSN: 1554-8929            Impact factor:   5.100


  47 in total

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Authors:  Annette Kampa; Andrey N Gagunashvili; Tobias A M Gulder; Brandon I Morinaka; Cristina Daolio; Markus Godejohann; Vivian P W Miao; Jörn Piel; Ólafur S Andrésson
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Review 4.  The Uncommon Enzymology of Cis-Acyltransferase Assembly Lines.

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5.  Nostophycin biosynthesis is directed by a hybrid polyketide synthase-nonribosomal peptide synthetase in the toxic cyanobacterium Nostoc sp. strain 152.

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Review 6.  Chemodiversity in freshwater and terrestrial cyanobacteria - a source for drug discovery.

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7.  Biosynthetic Cyclization Catalysts for the Assembly of Peptide and Polyketide Natural Products.

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Journal:  ChemCatChem       Date:  2021-01-28       Impact factor: 5.686

8.  Structural basis of keto acid utilization in nonribosomal depsipeptide synthesis.

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Review 10.  New peptides isolated from Lyngbya species: a review.

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