Sandbox Reserved 1677
From Proteopedia
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=== Important amino acids === | === Important amino acids === | ||
<scene name='87/873239/4_catalytic_residue/2'>There are four catalytic</scene> amino acids in AldC. | <scene name='87/873239/4_catalytic_residue/2'>There are four catalytic</scene> amino acids in AldC. | ||
- | + | == Asn 159, Glu 257, Gly 288, Cys 291=== | |
<scene name='87/873239/Nad_residues/1'>19 NAD+ Residues</scene> (binding site) | <scene name='87/873239/Nad_residues/1'>19 NAD+ Residues</scene> (binding site) | ||
- | + | === Ile 155, Asn 159, Lys 182, Gly 219, Ile 233, Ser 236, Ala 239, leu 242, Glu 257, leu 258, Gly 259, Cys 291, Glu 391, Phe 393 === | |
Nicotinamide ring is helped in place by van der Waals interactions with Leu 258, Leu 419, and Phe 456 and a hydrogen bond from the backbone carbonyl of Leu 258 to the NH2 grouo of the cofactors. Polar interactions between the adenine ribose ring and side chains of Lys 182 and Glu 185 contribute to NAD+ binding. Interaction of Glu 185 with the 2' hydroxyl group of the adenine ribose determine the cofactor specificity as AldC is not able to accomodate the 2 phosphate of NADP(H) sterically. | Nicotinamide ring is helped in place by van der Waals interactions with Leu 258, Leu 419, and Phe 456 and a hydrogen bond from the backbone carbonyl of Leu 258 to the NH2 grouo of the cofactors. Polar interactions between the adenine ribose ring and side chains of Lys 182 and Glu 185 contribute to NAD+ binding. Interaction of Glu 185 with the 2' hydroxyl group of the adenine ribose determine the cofactor specificity as AldC is not able to accomodate the 2 phosphate of NADP(H) sterically. | ||
- | '''''' | ||
- | == Octanol Lingand (binding site) | + | === Octanol Lingand (binding site) |
- | '''Trp 160 Tyr 163, Trp 450, Phe 456, Tyr 458, met 114, leu 118 =='''''' | + | '''Trp 160 Tyr 163, Trp 450, Phe 456, Tyr 458, met 114, leu 118 ==='''''' |
Apolar interactions dominate the octanal binding in the hydrophobic substrate binding pocket. A cluster of aromatic residues and two nonpolar residues (Methionine and Leucine) peovides hydophobic environment that accommodates octanal and other aliphatic aldehydes. The substrate binding site forms an aromatic box for adaptable apolar ligand interaction. | Apolar interactions dominate the octanal binding in the hydrophobic substrate binding pocket. A cluster of aromatic residues and two nonpolar residues (Methionine and Leucine) peovides hydophobic environment that accommodates octanal and other aliphatic aldehydes. The substrate binding site forms an aromatic box for adaptable apolar ligand interaction. | ||
To examine the contribution of the active site residues, a series of site directed mutants targeting residues in the NAD(H) binding site and the octanal binding site were generated. All the 31 mutants were expressed in E.coli and purified using nickel-affinity and size exclusion chromatographies. The enzyme activity screening showed that mutation of the catalytic residues in the NAD(H) binding site and octanal binding site resulted in enzyme with less than 1% of WT specific activity. | To examine the contribution of the active site residues, a series of site directed mutants targeting residues in the NAD(H) binding site and the octanal binding site were generated. All the 31 mutants were expressed in E.coli and purified using nickel-affinity and size exclusion chromatographies. The enzyme activity screening showed that mutation of the catalytic residues in the NAD(H) binding site and octanal binding site resulted in enzyme with less than 1% of WT specific activity. |
Revision as of 12:46, 19 April 2021
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This Sandbox is Reserved from 01/25/2021 through 04/30/2021 for use in Biochemistry taught by Bonnie Hall at Grand View University, Des Moines, USA. This reservation includes Sandbox Reserved 1665 through Sandbox Reserved 1682. |
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The Plant Pathogen Enzyme AldC
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