Structural basis for the catalytic mechanism of homoserine dehydrogenase

  • Navratna, Vikas
  • Reddy, Govardhan
  • Gopal, Balasubramanian
Publication date
January 2015
Publisher
International Union of Crystallography

Abstract

Homoserine dehydrogenase (HSD) is an oxidoreductase in the aspartic acid pathway. This enzyme coordinates a critical branch point of the metabolic pathway that leads to the synthesis of bacterial cell-wall components such as L-lysine and m-DAP in addition to other amino acids such as L-threonine, L-methionine and L-isoleucine. Here, a structural rationale for the hydride-transfer step in the reaction mechanism of HSD is reported. The structure of Staphylococcus aureus HSD was determined at different pH conditions to understand the basis for the enhanced enzymatic activity at basic pH. An analysis of the crystal structure revealed that Lys105, which is located at the interface of the catalytic and cofactor-binding sites, could mediate the hy...

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Topics

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reaction mechanismMilitary conflict
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L-isoleucineChemical substance
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L-threonineChemical substance
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metabolic pathwayTelevision show
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hydrideChemical compound
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lysineChemical substance
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pHAircraft
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cofactorChemical compound
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acidChemical compound
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L-methionineChemical substance
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L-lysineChemical substance
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