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Dive into the research topics where James B. Garrett is active.

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Featured researches published by James B. Garrett.


Applied and Environmental Microbiology | 2004

Enhancing the Thermal Tolerance and Gastric Performance of a Microbial Phytase for Use as a Phosphate-Mobilizing Monogastric-Feed Supplement

James B. Garrett; Keith Kretz; Eileen O'donoghue; Janne Kerovuo; William Kim; Nelson Barton; Geoffrey P. Hazlewood; Jay M. Short; Dan E. Robertson; Kevin A. Gray

ABSTRACT The inclusion of phytase in monogastric animal feed has the benefit of hydrolyzing indigestible plant phytate (myo-inositol 1,2,3,4,5,6-hexakis dihydrogen phosphate) to provide poultry and swine with dietary phosphorus. An ideal phytase supplement should have a high temperature tolerance, allowing it to survive the feed pelleting process, a high specific activity at low pHs, and adequate gastric performance. For this study, the performance of a bacterial phytase was optimized by the use of gene site saturation mutagenesis technology. Beginning with the appA gene from Escherichia coli, a library of clones incorporating all 19 possible amino acid changes and 32 possible codon variations in 431 residues of the sequence was generated and screened for mutants exhibiting improved thermal tolerance. Fourteen single site variants were discovered that retained as much as 10 times the residual activity of the wild-type enzyme after a heated incubation regimen. The addition of eight individual mutations into a single construct (Phy9X) resulted in a protein of maximal fitness, i.e., a highly active phytase with no loss of activity after heating at 62°C for 1 h and 27% of its initial activity after 10 min at 85°C, which was a significant improvement over the appA parental phytase. Phy9X also showed a 3.5-fold enhancement in gastric stability.


Archive | 2001

Recombinant bacterial phytases and uses thereof

Jay M. Short; Keith Kretz; Kevin A. Gray; Nelson Barton; James B. Garrett; Eileen O'donoghue; Eric J. Mathur


Archive | 2004

Glucosidases, nucleic acids encoding them and methods for making and using them

Kevin A. Gray; James B. Garrett; Nahla M. Aboushadi; Ryan Knowles; Eileen O'donoghue; Elizabeth Waters


Archive | 2003

Recombinant phytases and methods of making and using them

Jay M. Short; Keith Kretz; Kevin A. Gray; Nelson Barton; James B. Garrett; Eileen O'donoghue; Eric J. Mather


Archive | 2005

Phytases and methods for making and using them

Jay M. Short; Kevin A. Gray; Nelson Barton; James B. Garrett; Eileen O'donoghue; Dan E. Robertson


Archive | 2002

Phytases, acides nucleiques codant pour ces phytases et methodes de fabrication et d'utilisation desdites phytases

Jay M. Short; Keith Kretz; Kevin A. Gray; Nelson Barton; James B. Garrett; Eileen O'donoghue; Eric J. Mathur; Dan E. Robertson


Archive | 2002

Phytases, nucleic acids encoding them and methods and using them

Jay M. Short; Keith Kretz; Kevin A. Gray; Nelson Barton; James B. Garrett; Eileen O'donoghue; Eric J. Mathur


Archive | 2001

Rekombinante bakterielle phytasen und ihre verwendung Recombinant bacterial phytases and their use

Jay M. Short; Kevin A. Gray; Nelson Barton; James B. Garrett; Eileen O'donoghue; Eric J. Mathur; Dan E. Robertson


Archive | 2001

Fitasas bacterianas recombinantes y su utilizacion.

Nelson Barton; James B. Garrett; Kevin A. Gray; Eric J. Mathur; Eileen O'donoghue; Dan E. Robertson; Jay M. Short


Archive | 2001

Phytases bactériennes de recombinaison et leurs utilisations

Jay M. Short; Keith Kretz; Kevin A. Gray; Nelson Barton; James B. Garrett; Eileen O'donoghue

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Eric J. Mathur

University of California

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Janne Kerovuo

VTT Technical Research Centre of Finland

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