| Literature DB >> 26538563 |
Yogesh B Khandokar1, Parul Srivastava1, Subir Sarker2, Crystall M D Swarbrick1, David Aragao3, Nathan Cowieson3, Jade K Forwood4.
Abstract
PaaI thioesterases are members of the TE13 thioesterase family that catalyze the hydrolysis of thioester bonds between coenzyme A and phenylacetyl-CoA. In this study we characterize the PaaI thioesterase from Streptococcus pneumoniae (SpPaaI), including structural analysis based on crystal diffraction data to 1.8-Å resolution, to reveal two double hotdog domains arranged in a back to back configuration. Consistent with the crystallography data, both size exclusion chromatography and small angle x-ray scattering data support a tetrameric arrangement of thioesterase domains in solution. Assessment of SpPaaI activity against a range of acyl-CoA substrates showed activity for both phenylacetyl-CoA and medium-chain fatty-acyl CoA substrates. Mutagenesis of putative active site residues reveals Asn(37), Asp(52), and Thr(68) are important for catalysis, and size exclusion chromatography analysis and x-ray crystallography confirm that these mutants retain the same tertiary and quaternary structures, establishing that the reduced activity is not a result of structural perturbations. Interestingly, the structure of SpPaaI in the presence of CoA provides a structural basis for the observed substrate specificity, accommodating a 10-carbon fatty acid chain, and a large conformational change of up to 38 Å in the N terminus, and a loop region involving Tyr(38)-Tyr(39). This is the first time PaaI thioesterases have displayed a dual specificity for medium-chain acyl-CoAs substrates and phenylacetyl-CoA substrates, and we provide a structural basis for this specificity, highlighting a novel induced fit mechanism that is likely to be conserved within members of this enzyme family.Entities:
Keywords: Streptococcus pneumoniae; crystal structure; fatty acyl-CoA; phenyl acetic acid; protein crystallization; protein purification; small-angle x-ray scattering (SAXS); thioesterase; x-ray crystallography
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Year: 2015 PMID: 26538563 PMCID: PMC4722464 DOI: 10.1074/jbc.M115.677484
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157