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Insights to the Structural Basis for the Stereospecificity of the Escherichia coli Phytase, AppA

AppA, the Escherichia coli periplasmic phytase of clade 2 of the histidine phosphatase (HP2) family, has been well-characterized and successfully engineered for use as an animal feed supplement. AppA is a 1D-6-phytase and highly stereospecific but transiently accumulates 1D-myo-Ins(2,3,4,5)P(4) and...

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Autores principales: Acquistapace, Isabella M., Thompson, Emma J., Kühn, Imke, Bedford, Mike R., Brearley, Charles A., Hemmings, Andrew M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181005/
https://www.ncbi.nlm.nih.gov/pubmed/35683026
http://dx.doi.org/10.3390/ijms23116346
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author Acquistapace, Isabella M.
Thompson, Emma J.
Kühn, Imke
Bedford, Mike R.
Brearley, Charles A.
Hemmings, Andrew M.
author_facet Acquistapace, Isabella M.
Thompson, Emma J.
Kühn, Imke
Bedford, Mike R.
Brearley, Charles A.
Hemmings, Andrew M.
author_sort Acquistapace, Isabella M.
collection PubMed
description AppA, the Escherichia coli periplasmic phytase of clade 2 of the histidine phosphatase (HP2) family, has been well-characterized and successfully engineered for use as an animal feed supplement. AppA is a 1D-6-phytase and highly stereospecific but transiently accumulates 1D-myo-Ins(2,3,4,5)P(4) and other lower phosphorylated intermediates. If this bottleneck in liberation of orthophosphate is to be obviated through protein engineering, an explanation of its rather rigid preference for the initial site and subsequent cleavage of phytic acid is required. To help explain this behaviour, the role of the catalytic proton donor residue in determining AppA stereospecificity was investigated. Four variants were generated by site-directed mutagenesis of the active site HDT amino acid sequence motif containing the catalytic proton donor, D304. The identity and position of the prospective proton donor residue was found to strongly influence stereospecificity. While the wild-type enzyme has a strong preference for 1D-6-phytase activity, a marked reduction in stereospecificity was observed for a D304E variant, while a proton donor-less mutant (D304A) displayed exclusive 1D-1/3-phytase activity. High-resolution X-ray crystal structures of complexes of the mutants with a non-hydrolysable substrate analogue inhibitor point to a crucial role played by D304 in stereospecificity by influencing the size and polarity of specificity pockets A and B. Taken together, these results provide the first evidence for the involvement of the proton donor residue in determining the stereospecificity of HP2 phytases and prepares the ground for structure-informed engineering studies targeting the production of animal feed enzymes capable of the efficient and complete dephosphorylation of dietary phytic acid.
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spelling pubmed-91810052022-06-10 Insights to the Structural Basis for the Stereospecificity of the Escherichia coli Phytase, AppA Acquistapace, Isabella M. Thompson, Emma J. Kühn, Imke Bedford, Mike R. Brearley, Charles A. Hemmings, Andrew M. Int J Mol Sci Article AppA, the Escherichia coli periplasmic phytase of clade 2 of the histidine phosphatase (HP2) family, has been well-characterized and successfully engineered for use as an animal feed supplement. AppA is a 1D-6-phytase and highly stereospecific but transiently accumulates 1D-myo-Ins(2,3,4,5)P(4) and other lower phosphorylated intermediates. If this bottleneck in liberation of orthophosphate is to be obviated through protein engineering, an explanation of its rather rigid preference for the initial site and subsequent cleavage of phytic acid is required. To help explain this behaviour, the role of the catalytic proton donor residue in determining AppA stereospecificity was investigated. Four variants were generated by site-directed mutagenesis of the active site HDT amino acid sequence motif containing the catalytic proton donor, D304. The identity and position of the prospective proton donor residue was found to strongly influence stereospecificity. While the wild-type enzyme has a strong preference for 1D-6-phytase activity, a marked reduction in stereospecificity was observed for a D304E variant, while a proton donor-less mutant (D304A) displayed exclusive 1D-1/3-phytase activity. High-resolution X-ray crystal structures of complexes of the mutants with a non-hydrolysable substrate analogue inhibitor point to a crucial role played by D304 in stereospecificity by influencing the size and polarity of specificity pockets A and B. Taken together, these results provide the first evidence for the involvement of the proton donor residue in determining the stereospecificity of HP2 phytases and prepares the ground for structure-informed engineering studies targeting the production of animal feed enzymes capable of the efficient and complete dephosphorylation of dietary phytic acid. MDPI 2022-06-06 /pmc/articles/PMC9181005/ /pubmed/35683026 http://dx.doi.org/10.3390/ijms23116346 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Acquistapace, Isabella M.
Thompson, Emma J.
Kühn, Imke
Bedford, Mike R.
Brearley, Charles A.
Hemmings, Andrew M.
Insights to the Structural Basis for the Stereospecificity of the Escherichia coli Phytase, AppA
title Insights to the Structural Basis for the Stereospecificity of the Escherichia coli Phytase, AppA
title_full Insights to the Structural Basis for the Stereospecificity of the Escherichia coli Phytase, AppA
title_fullStr Insights to the Structural Basis for the Stereospecificity of the Escherichia coli Phytase, AppA
title_full_unstemmed Insights to the Structural Basis for the Stereospecificity of the Escherichia coli Phytase, AppA
title_short Insights to the Structural Basis for the Stereospecificity of the Escherichia coli Phytase, AppA
title_sort insights to the structural basis for the stereospecificity of the escherichia coli phytase, appa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181005/
https://www.ncbi.nlm.nih.gov/pubmed/35683026
http://dx.doi.org/10.3390/ijms23116346
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