HEPD belongs to the superfamily of 2-His-1-carboxylate non-heme iron-dependent dioxygenases. It converts 2-hydroxyethylphosphonate (2-HEP) to hydroxymethylphosphonate (HMP) and formate. Previously postulated mechanisms for the reaction catalyzed by HEPD cannot explain its conversion of 1-HEP to acetylphosphate. Alternative mechanisms that involve either phosphite or methylphosphonate as intermediates, which potentially explain all experimental studies including isotope labeling experiments and use of substrate analogues, were investigated. The results of these studies reveal that these alternative mechanisms are not correct. Site-directed mutagenesis studies of Lys16, Arg90, and Tyr98 support roles of these residues in binding of 2-HEP. Mut...
Natural product phosphonates are used extensively in the clinic as antibacterials and in commercial ...
<p>In both mechanisms, the intermediates are labeled <b>A</b>–<b>D</b>. <b>A</b> Iron(II) in the act...
Activation of O–H bonds by inorganic metal-oxo complexes has been documented, but no cognate enzymat...
2-Hydroxyethylphosphonate dioxygenase (HEPD) and methylphosphonate synthase (MPnS) are nonheme iron ...
Synthetic and naturally-occurring phosphonates have found widespread use in both agriculture and med...
Methylphosphonate synthase is a non-heme iron-dependent oxygenase that converts 2-hydroxyethylphosph...
Nonheme iron oxygenases that carry out four-electron oxidations of substrate have been proposed to e...
AbstractHydroxymandelate synthase (HmaS) and hydroxyphenylpyruvate dioxygenase (HppD) are non-heme i...
The hydroxyethylphosphonate dioxygenase (HEPD) catalyzes the critical carbon–carbon bond cleavage st...
Enzymes are biological catalysts which trigger chemically inert reaction or accelerate the rates of ...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
Nonheme iron oxygenases that carry out four-electron oxidations of substrate have been proposed to e...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
Diiron oxygenase PhnZ catalyzes the catabolism of organophosphonate (Pn) (<i>R</i>)-2-amino-1-hydrox...
The mature form of phytanoyl-coenzyme A 2-hydroxylase (PAHX), a nonheme Fe(II)- and 2-oxoglutarate-d...
Natural product phosphonates are used extensively in the clinic as antibacterials and in commercial ...
<p>In both mechanisms, the intermediates are labeled <b>A</b>–<b>D</b>. <b>A</b> Iron(II) in the act...
Activation of O–H bonds by inorganic metal-oxo complexes has been documented, but no cognate enzymat...
2-Hydroxyethylphosphonate dioxygenase (HEPD) and methylphosphonate synthase (MPnS) are nonheme iron ...
Synthetic and naturally-occurring phosphonates have found widespread use in both agriculture and med...
Methylphosphonate synthase is a non-heme iron-dependent oxygenase that converts 2-hydroxyethylphosph...
Nonheme iron oxygenases that carry out four-electron oxidations of substrate have been proposed to e...
AbstractHydroxymandelate synthase (HmaS) and hydroxyphenylpyruvate dioxygenase (HppD) are non-heme i...
The hydroxyethylphosphonate dioxygenase (HEPD) catalyzes the critical carbon–carbon bond cleavage st...
Enzymes are biological catalysts which trigger chemically inert reaction or accelerate the rates of ...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
Nonheme iron oxygenases that carry out four-electron oxidations of substrate have been proposed to e...
Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen...
Diiron oxygenase PhnZ catalyzes the catabolism of organophosphonate (Pn) (<i>R</i>)-2-amino-1-hydrox...
The mature form of phytanoyl-coenzyme A 2-hydroxylase (PAHX), a nonheme Fe(II)- and 2-oxoglutarate-d...
Natural product phosphonates are used extensively in the clinic as antibacterials and in commercial ...
<p>In both mechanisms, the intermediates are labeled <b>A</b>–<b>D</b>. <b>A</b> Iron(II) in the act...
Activation of O–H bonds by inorganic metal-oxo complexes has been documented, but no cognate enzymat...