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The catalytic machinery of a key enzyme in amino Acid biosynthesis.


ABSTRACT: The aspartate pathway of amino acid biosynthesis is essential for all microbial life but is absent in mammals. Characterizing the enzyme-catalyzed reactions in this pathway can identify new protein targets for the development of antibiotics with unique modes of action. The enzyme aspartate ?-semialdehyde dehydrogenase (ASADH) catalyzes an early branch point reaction in the aspartate pathway. Kinetic, mutagenic, and structural studies of ASADH from various microbial species have been used to elucidate mechanistic details and to identify essential amino acids involved in substrate binding, catalysis, and enzyme regulation. Important structural and functional differences have been found between ASADHs isolated from these bacterial and fungal organisms, opening the possibility for developing species-specific antimicrobial agents that target this family of enzymes.

SUBMITTER: Viola RE 

PROVIDER: S-EPMC3276109 | biostudies-literature | 2011

REPOSITORIES: biostudies-literature

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The catalytic machinery of a key enzyme in amino Acid biosynthesis.

Viola Ronald E RE   Faehnle Christopher R CR   Blanco Julio J   Moore Roger A RA   Liu Xuying X   Arachea Buenafe T BT   Pavlovsky Alexander G AG  

Journal of amino acids 20101222


The aspartate pathway of amino acid biosynthesis is essential for all microbial life but is absent in mammals. Characterizing the enzyme-catalyzed reactions in this pathway can identify new protein targets for the development of antibiotics with unique modes of action. The enzyme aspartate β-semialdehyde dehydrogenase (ASADH) catalyzes an early branch point reaction in the aspartate pathway. Kinetic, mutagenic, and structural studies of ASADH from various microbial species have been used to eluc  ...[more]

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