Sandbox Reserved 714: Difference between revisions
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The N-terminal domain is responsible of the Mg<sup>2+</sup> dependant hydrolysis of dihydroxy lipid phosphates <ref>PMID:15096040</ref>. Indeed, the aliphatic substrate binds the protein on its hydrophobic tunnel, as it has been described previously. The specificity of this enzyme has been tested for several lipid molecules, and the best substrate found is the monophosphate of dihydroxy stearic acid (threo-9/10-phosphonoxy-hydroxy-octadecanoic acid) <ref>PMID:12574510</ref>. | The N-terminal domain is responsible of the Mg<sup>2+</sup> dependant hydrolysis of dihydroxy lipid phosphates <ref>PMID:15096040</ref>. Indeed, the aliphatic substrate binds the protein on its hydrophobic tunnel, as it has been described previously. The specificity of this enzyme has been tested for several lipid molecules, and the best substrate found is the monophosphate of dihydroxy stearic acid (threo-9/10-phosphonoxy-hydroxy-octadecanoic acid) <ref>PMID:12574510</ref>. | ||
In the example of this substrate, the reaction follows this equation: | |||
9/10-phosphonoxy-hydroxy-octadecanoate + H<sub>2</sub>O ↔ 9/10-dihydroxy-octadecanoate + phosphate | |||
Its <scene name='Sandbox_Reserved_714/Nter_activesite/1'>active site</scene> contains several conserved aspartates in phosphatases and phosphonatases: D9, D11, D184 and D185. This enzymatic activity is Mg<sup>2+</sup> dependant, because the structure of the active site is in its optimal conformation when the cation makes coordination interactions. When the catalytic activity of the N-term domain is available, Magnesium is octahedrally coordinated with the four aspartates, one water molecule and the phosphate belonging to the substrate. | Its <scene name='Sandbox_Reserved_714/Nter_activesite/1'>active site</scene> contains several conserved aspartates in phosphatases and phosphonatases: D9, D11, D184 and D185. This enzymatic activity is Mg<sup>2+</sup> dependant, because the structure of the active site is in its optimal conformation when the cation makes coordination interactions. When the catalytic activity of the N-term domain is available, Magnesium is octahedrally coordinated with the four aspartates, one water molecule and the phosphate belonging to the substrate. | ||
Revision as of 16:33, 2 January 2013

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DUTREUX Fabien, BONHOURE Anna
