Journal:JBIC:32

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<b>Molecular Tour</b><br>
<b>Molecular Tour</b><br>
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A strictly conserved active site arginine residue (&#945;R157) and two histidine residues (&#945;H80 and &#945;H81) located near the active site of the Fe-type nitrile hydratase from Comamonas testosteroni Ni1 (CtNHase), were mutated. These mutant enzymes were examined for their ability to bind iron and hydrate acrylonitrile. For the &#945;R157A mutant, the residual activity (kcat = 10 ± 2 s&#8722;1) accounts for less than 1 % of the wild-type activity (kcat = 1100 ± 30 s&#8722;1) while the Km value is nearly unchanged at 205 ± 10 mM. On the other hand, mutation of the active site pocket &#945;H80 and &#945;H81 residues to alanine resulted in enzymes with kcat values of 220 ± 40 and 77 ± 13 s&#8722;1, respectively, and Km values of 187 ± 11 and 179 ± 18 mM. The double mutant (&#945;H80A/&#945;H81A) was also prepared and provided an enzyme with a kcat value of 132 ± 3 s&#8722;1 and a Km value of 213 ± 61 mM. These data indicate that all three residues are catalytically important, but not essential. X-ray crystal structures of the &#945;H80A/&#945;H81A, &#945;H80W/&#945;H81W, and &#945;R157A mutant CtNHase enzymes were solved to 2.0, 2.8, and 2.5 ֵ resolutions, respectively. In each mutant enzyme, hydrogen-bonding interactions crucial for the catalytic function of the &#945;Cys104-SOH ligand are disrupted. Disruption of these hydrogen bonding interactions likely alters the nucleophilicity of the sulfenic acid oxygen and the Lewis acidity of the active site Fe(III) ion.
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Revision as of 14:56, 11 June 2015

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