Literature DB >> 29161022

Structural and Functional Studies of the Daunorubicin Priming Ketosynthase DpsC.

David R Jackson1, Gaurav Shakya1, Avinash B Patel1, Lina Y Mohammed2, Kostas Vasilakis2, Pakorn Wattana-Amorn2, Timothy R Valentic1, Jacob C Milligan1, Matthew P Crump2, John Crosby2, Shiou-Chuan Tsai1.   

Abstract

Daunorubicin is a type II polyketide, one of a large class of polyaromatic natural products with anticancer, antibiotic, and antiviral activity. Type II polyketides are formed by the assembly of malonyl-CoA building blocks, though in rare cases, biosynthesis is initiated by the incorporation of a nonmalonyl derived starter unit, which adds molecular diversity to the poly-β-ketone backbone. Priming mechanisms for the transfer of novel starter units onto polyketide synthases (PKS) are still poorly understood. Daunorubicin biosynthesis incorporates a unique propionyl starter unit thought to be selected for by a subclass ("DpsC type") of priming ketosynthases (KS III). To date, however, no structural information exists for this subclass of KS III enzymes. Although selectivity for self-acylation with propionyl-CoA has previously been implied, we demonstrate that DpsC shows no discrimination for self-acylation or acyl-transfer to the cognate acyl carrier protein, DpsG with short acyl-CoAs. We present five crystal structures of DpsC, including apo-DpsC, acetyl-DpsC, propionyl-DpsC, butyryl-DpsC, and a cocrystal of DpsC with a nonhydrolyzable phosphopantetheine (PPant) analogue. The DpsC crystal structures reveal the architecture of the active site, the molecular determinants for catalytic activity and homology to O-malonyl transferases, but also indicate distinct differences. These results provide a structural basis for rational engineering of starter unit selection in type II polyketide synthases.

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Year:  2017        PMID: 29161022     DOI: 10.1021/acschembio.7b00551

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


  4 in total

1.  Computational structural enzymology methodologies for the study and engineering of fatty acid synthases, polyketide synthases and nonribosomal peptide synthetases.

Authors:  Andrew J Schaub; Gabriel O Moreno; Shiji Zhao; Hau V Truong; Ray Luo; Shiou-Chuan Tsai
Journal:  Methods Enzymol       Date:  2019-04-22       Impact factor: 1.600

2.  Nonlinear Biosynthetic Assembly of Alpiniamide by a Hybrid cis/trans-AT PKS-NRPS.

Authors:  Renata Sigrist; Hanna Luhavaya; Shaun M K McKinnie; Amanda Ferreira da Silva; Igor D Jurberg; Bradley S Moore; Luciana Gonzaga de Oliveira
Journal:  ACS Chem Biol       Date:  2020-04-06       Impact factor: 5.100

Review 3.  3-Ketoacyl-ACP synthase (KAS) III homologues and their roles in natural product biosynthesis.

Authors:  Risa Nofiani; Benjamin Philmus; Yosi Nindita; Taifo Mahmud
Journal:  Medchemcomm       Date:  2019-04-29       Impact factor: 3.597

4.  Discovery and Biosynthesis of Bolagladins: Unusual Lipodepsipeptides from Burkholderia gladioli Clinical Isolates*.

Authors:  Yousef Dashti; Ioanna T Nakou; Alex J Mullins; Gordon Webster; Xinyun Jian; Eshwar Mahenthiralingam; Gregory L Challis
Journal:  Angew Chem Int Ed Engl       Date:  2020-09-23       Impact factor: 15.336

  4 in total

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