2d2h: Difference between revisions

New page: left|200px<br /><applet load="2d2h" size="350" color="white" frame="true" align="right" spinBox="true" caption="2d2h, resolution 1.80Å" /> '''OpdA from Agrobacter...
 
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==Overview==
==Overview==
A detailed understanding of the catalytic mechanism of enzymes is an, important step toward improving their activity for use in biotechnology., In this paper, crystal soaking experiments and X-ray crystallography were, used to analyse the mechanism of the Agrobacterium radiobacter, phosphotriesterase, OpdA, an enzyme capable of detoxifying a broad range, of organophosphate pesticides. The structures of OpdA complexed with, ethylene glycol and the product of dimethoate hydrolysis, dimethyl, thiophosphate, provide new details of the catalytic mechanism. These, structures suggest that the attacking nucleophile is a terminally bound, hydroxide, consistent with the catalytic mechanism of other binuclear, metallophosphoesterases. In addition, a crystal structure with the, potential substrate trimethyl phosphate bound non-productively, demonstrates the importance of the active site cavity in orienting the, substrate into an approximation of the transition state.
A detailed understanding of the catalytic mechanism of enzymes is an important step toward improving their activity for use in biotechnology. In this paper, crystal soaking experiments and X-ray crystallography were used to analyse the mechanism of the Agrobacterium radiobacter phosphotriesterase, OpdA, an enzyme capable of detoxifying a broad range of organophosphate pesticides. The structures of OpdA complexed with ethylene glycol and the product of dimethoate hydrolysis, dimethyl thiophosphate, provide new details of the catalytic mechanism. These structures suggest that the attacking nucleophile is a terminally bound hydroxide, consistent with the catalytic mechanism of other binuclear metallophosphoesterases. In addition, a crystal structure with the potential substrate trimethyl phosphate bound non-productively demonstrates the importance of the active site cavity in orienting the substrate into an approximation of the transition state.


==About this Structure==
==About this Structure==
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[[Category: Aryldialkylphosphatase]]
[[Category: Aryldialkylphosphatase]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Carr, P.D.]]
[[Category: Carr, P D.]]
[[Category: Jackson, C.]]
[[Category: Jackson, C.]]
[[Category: Kim, H.K.]]
[[Category: Kim, H K.]]
[[Category: Liu, J.W.]]
[[Category: Liu, J W.]]
[[Category: Ollis, D.L.]]
[[Category: Ollis, D L.]]
[[Category: CO]]
[[Category: CO]]
[[Category: CO2]]
[[Category: CO2]]
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[[Category: phosphotriesterase]]
[[Category: phosphotriesterase]]


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