2d40: Difference between revisions

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New page: left|200px<br /><applet load="2d40" size="350" color="white" frame="true" align="right" spinBox="true" caption="2d40, resolution 2.41Å" /> '''Crystal Structure of...
 
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==Overview==
==Overview==
Gentisic acid (2,5-dihydroxybenzoic acid) is a key intermediate in aerobic, bacterial pathways that are responsible for the metabolism of a large, number of aromatic compounds. The critical step of these pathways is the, oxygen-dependent reaction catalysed by gentisate 1,2-dioxygenase which, opens the aromatic ring of gentisate to form maleylpyruvate. From gentisic, acid, the cell derives carbon and energy through the conversion of, maleylpyruvate to central metabolites. We have confirmed the annotation of, a gentisate 1,2-dioygenase from the pathogenic O157:H7 Escherichia coli, strain and present the first structural characterization of this family of, enzymes. The identity of the reaction product was revealed using tandem, mass spectroscopy. The operon responsible for the degradation of gentisate, in this organism exhibits a high degree of conservation with the, gentisate-degrading operons of other pathogenic bacteria, including the, Shiga toxin-producing E. coli O103:H2, but does not appear to be present, in non-pathogenic strains. The acquisition of the gentisate operon may, represent a special adaptation to meet carbon source requirements under, conditions of environmental stress and may provide a selective advantage, for enterohaemorrhagic E. coli relative to their non-pathogenic, counterparts.
Gentisic acid (2,5-dihydroxybenzoic acid) is a key intermediate in aerobic bacterial pathways that are responsible for the metabolism of a large number of aromatic compounds. The critical step of these pathways is the oxygen-dependent reaction catalysed by gentisate 1,2-dioxygenase which opens the aromatic ring of gentisate to form maleylpyruvate. From gentisic acid, the cell derives carbon and energy through the conversion of maleylpyruvate to central metabolites. We have confirmed the annotation of a gentisate 1,2-dioygenase from the pathogenic O157:H7 Escherichia coli strain and present the first structural characterization of this family of enzymes. The identity of the reaction product was revealed using tandem mass spectroscopy. The operon responsible for the degradation of gentisate in this organism exhibits a high degree of conservation with the gentisate-degrading operons of other pathogenic bacteria, including the Shiga toxin-producing E. coli O103:H2, but does not appear to be present in non-pathogenic strains. The acquisition of the gentisate operon may represent a special adaptation to meet carbon source requirements under conditions of environmental stress and may provide a selective advantage for enterohaemorrhagic E. coli relative to their non-pathogenic counterparts.


==About this Structure==
==About this Structure==
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[[Category: Gentisate 1,2-dioxygenase]]
[[Category: Gentisate 1,2-dioxygenase]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Adams, M.A.]]
[[Category: Adams, M A.]]
[[Category: BSGI, Montreal-Kingston.Bacterial.Structural.Genomics.Initiative.]]
[[Category: BSGI, Montreal-Kingston Bacterial Structural Genomics Initiative.]]
[[Category: Jia, Z.]]
[[Category: Jia, Z.]]
[[Category: FE]]
[[Category: FE]]
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[[Category: tetramer]]
[[Category: tetramer]]


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