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Crystal structure of a member of a novel family of dioxygenases (PF10014) reveals a conserved cupin fold and active site.


ABSTRACT: PF10014 is a novel family of 2-oxyglutarate-Fe(2+) -dependent dioxygenases that are involved in biosynthesis of antibiotics and regulation of biofilm formation, likely by catalyzing hydroxylation of free amino acids or other related ligands. The crystal structure of a PF10014 member from Methylibium petroleiphilum at 1.9 Å resolution shows strong structural similarity to cupin dioxygenases in overall fold and active site, despite very remote homology. However, one of the ?-strands of the cupin catalytic core is replaced by a loop that displays conformational isomerism that likely regulates the active site.

SUBMITTER: Xu Q 

PROVIDER: S-EPMC3920835 | biostudies-literature | 2014 Jan

REPOSITORIES: biostudies-literature

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Crystal structure of a member of a novel family of dioxygenases (PF10014) reveals a conserved cupin fold and active site.

Xu Qingping Q   Grant Joanna J   Chiu Hsiu-Ju HJ   Farr Carol L CL   Jaroszewski Lukasz L   Knuth Mark W MW   Miller Mitchell D MD   Lesley Scott A SA   Godzik Adam A   Elsliger Marc-André MA   Deacon Ashley M AM   Wilson Ian A IA  

Proteins 20130910 1


PF10014 is a novel family of 2-oxyglutarate-Fe(2+) -dependent dioxygenases that are involved in biosynthesis of antibiotics and regulation of biofilm formation, likely by catalyzing hydroxylation of free amino acids or other related ligands. The crystal structure of a PF10014 member from Methylibium petroleiphilum at 1.9 Å resolution shows strong structural similarity to cupin dioxygenases in overall fold and active site, despite very remote homology. However, one of the β-strands of the cupin c  ...[more]

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