Journal Article PHPPUBDB-12657

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Covalently Bound Substrate at the Regulatory Site of Yeast Pyruvate Decarboxylases Triggers Allosteric Enzyme Activation

 ;  ;  ;  ;  ;  ; DESY

2009
Soc. Bethesda, Md.

The journal of biological chemistry 284, 12136-12144 () [10.1074/jbc.M806228200]
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Abstract: The mechanism by which the enzyme pyruvate decarboxylase from two yeast species is activated allosterically has been elucidated. A total of seven three-dimensional structures of the enzyme, of enzyme variants, or of enzyme complexes from two yeast species, three of them reported here for the first time, provide detailed atomic resolution snapshots along the activation coordinate. The prime event is the covalent binding of the substrate pyruvate to the side chain of cysteine 221, thus forming a thiohemiketal. This reaction causes the shift of a neighboring amino acid, which eventually leads to the rigidification of two otherwise flexible loops, one of which provides two histidine residues necessary to complete the enzymatically competent active site architecture. The structural data are complemented and supported by kinetic investigations and binding studies, providing a consistent picture of the structural changes occurring upon enzyme activation.

Keyword(s): Allosteric Regulation: physiology (MeSH) ; Enzyme Activation: physiology (MeSH) ; Fungal Proteins: chemistry (MeSH) ; Kinetics (MeSH) ; Kluyveromyces: enzymology (MeSH) ; Protein Structure, Tertiary: physiology (MeSH) ; Pyruvate Decarboxylase: chemistry (MeSH) ; Pyruvic Acid: chemistry (MeSH) ; Fungal Proteins ; Pyruvic Acid ; Pyruvate Decarboxylase

Classification:

Contributing Institute(s):
  1. European Molecular Biology Laboratory (EMBL)
Research Program(s):
  1. FS Beamline without reference (POF1-550) (POF1-550)
Experiment(s):
  1. Unknown DESY Beamline

Appears in the scientific report 2009
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Medline ; JCR ; No Author Disambiguation ; Thomson Reuters Master Journal List ; Web of Science Core Collection
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 Record created 2012-09-19, last modified 2025-07-31


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