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Exploring the Chain Release Mechanism from an Atypical Apicomplexan Polyketide Synthase.

Publication ,  Journal Article
Keeler, AM; Petruzziello, PE; Boger, EG; D'Ambrosio, HK; Derbyshire, ER
Published in: Biochemistry
September 2023

Polyketide synthases (PKSs) are megaenzymes that form chemically diverse polyketides and are found within the genomes of nearly all classes of life. We recently discovered the type I PKS from the apicomplexan parasite Toxoplasma gondii, TgPKS2, which contains a unique putative chain release mechanism that includes ketosynthase (KS) and thioester reductase (TR) domains. Our bioinformatic analysis of the thioester reductase of TgPKS2, TgTR, suggests differences compared to other systems and hints at a possibly conserved release mechanism within the apicomplexan subclass Coccidia. To evaluate this release module, we first isolated TgTR and observed that it is capable of 4 electron (4e-) reduction of octanoyl-CoA to the primary alcohol, octanol, utilizing NADH. TgTR was also capable of generating octanol in the presence of octanal and NADH, but no reactions were observed when NADPH was supplied as a cofactor. To biochemically characterize the protein, we measured the catalytic efficiency of TgTR using a fluorescence assay and determined the TgTR binding affinity for cofactor and substrates using isothermal titration calorimetry (ITC). We additionally show that TgTR is capable of reducing an acyl carrier protein (ACP)-tethered substrate by liquid chromatography mass spectrometry and determine that TgTR binds to holo-TgACP4, its predicted cognate ACP, with a KD of 5.75 ± 0.77 μM. Finally, our transcriptional analysis shows that TgPKS2 is upregulated ∼4-fold in the parasite's cyst-forming bradyzoite stage compared to tachyzoites. Our study identifies features that distinguish TgPKS2 from well-characterized systems in bacteria and fungi and suggests it aids the T. gondii cyst stage.

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Published In

Biochemistry

DOI

EISSN

1520-4995

ISSN

0006-2960

Publication Date

September 2023

Volume

62

Issue

17

Start / End Page

2677 / 2688

Related Subject Headings

  • Polyketide Synthases
  • Oxidoreductases
  • NAD
  • Biochemistry & Molecular Biology
  • Acyl Carrier Protein
  • 3404 Medicinal and biomolecular chemistry
  • 3205 Medical biochemistry and metabolomics
  • 3101 Biochemistry and cell biology
  • 1101 Medical Biochemistry and Metabolomics
  • 0601 Biochemistry and Cell Biology
 

Citation

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Chicago
ICMJE
MLA
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Keeler, A. M., Petruzziello, P. E., Boger, E. G., D’Ambrosio, H. K., & Derbyshire, E. R. (2023). Exploring the Chain Release Mechanism from an Atypical Apicomplexan Polyketide Synthase. Biochemistry, 62(17), 2677–2688. https://doi.org/10.1021/acs.biochem.3c00272
Keeler, Aaron M., Porter E. Petruzziello, Elizabeth G. Boger, Hannah K. D’Ambrosio, and Emily R. Derbyshire. “Exploring the Chain Release Mechanism from an Atypical Apicomplexan Polyketide Synthase.Biochemistry 62, no. 17 (September 2023): 2677–88. https://doi.org/10.1021/acs.biochem.3c00272.
Keeler AM, Petruzziello PE, Boger EG, D’Ambrosio HK, Derbyshire ER. Exploring the Chain Release Mechanism from an Atypical Apicomplexan Polyketide Synthase. Biochemistry. 2023 Sep;62(17):2677–88.
Keeler, Aaron M., et al. “Exploring the Chain Release Mechanism from an Atypical Apicomplexan Polyketide Synthase.Biochemistry, vol. 62, no. 17, Sept. 2023, pp. 2677–88. Epmc, doi:10.1021/acs.biochem.3c00272.
Keeler AM, Petruzziello PE, Boger EG, D’Ambrosio HK, Derbyshire ER. Exploring the Chain Release Mechanism from an Atypical Apicomplexan Polyketide Synthase. Biochemistry. 2023 Sep;62(17):2677–2688.
Journal cover image

Published In

Biochemistry

DOI

EISSN

1520-4995

ISSN

0006-2960

Publication Date

September 2023

Volume

62

Issue

17

Start / End Page

2677 / 2688

Related Subject Headings

  • Polyketide Synthases
  • Oxidoreductases
  • NAD
  • Biochemistry & Molecular Biology
  • Acyl Carrier Protein
  • 3404 Medicinal and biomolecular chemistry
  • 3205 Medical biochemistry and metabolomics
  • 3101 Biochemistry and cell biology
  • 1101 Medical Biochemistry and Metabolomics
  • 0601 Biochemistry and Cell Biology