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A conserved motif flags Acyl Carrier Proteins for β-branching in polyketide synthesis

Type I PKSs often utilise programmed β-branching, via enzymes of an “HMG-CoA synthase (HCS) cassette”, to incorporate various side chains at the second carbon from the terminal carboxylic acid of growing polyketide backbones. We identified a strong sequence motif in Acyl Carrier Proteins (ACPs) wher...

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Detalles Bibliográficos
Autores principales: Haines, Anthony S, Dong, Xu, Song, Zhongshu, Farmer, Rohit, Williams, Christopher, Hothersall, Joanne, Płoskoń, Eliza, Wattana-amorn, Pakorn, Stephens, Elton R., Yamada, Erika, Gurney, Rachel, Takebayashi, Yuiko, Masschelein, Joleen, Cox, Russell J., Lavigne, Rob, Willis, Christine L., Simpson, Thomas J., Crosby, John, Winn, Peter J., Thomas, Christopher M., Crump, Matthew P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4658705/
https://www.ncbi.nlm.nih.gov/pubmed/24056399
http://dx.doi.org/10.1038/nchembio.1342
Descripción
Sumario:Type I PKSs often utilise programmed β-branching, via enzymes of an “HMG-CoA synthase (HCS) cassette”, to incorporate various side chains at the second carbon from the terminal carboxylic acid of growing polyketide backbones. We identified a strong sequence motif in Acyl Carrier Proteins (ACPs) where β-branching is known. Substituting ACPs confirmed a correlation of ACP type with β-branching specificity. While these ACPs often occur in tandem, NMR analysis of tandem β-branching ACPs indicated no ACP-ACP synergistic effects and revealed that the conserved sequence motif forms an internal core rather than an exposed patch. Modelling and mutagenesis identified ACP Helix III as a probable anchor point of the ACP-HCS complex whose position is determined by the core. Mutating the core affects ACP functionality while ACP-HCS interface substitutions modulate system specificity. Our method for predicting β-carbon branching expands the potential for engineering novel polyketides and lays a basis for determining specificity rules.