Phe-140 Determines the Catalytic Efficiency of Arylacetonitrilase from Alcaligenes faecalis

Arylacetonitrilase from ATCC8750 (NitAF) hydrolyzes various arylacetonitriles to the corresponding carboxylic acids. A systematic strategy of amino acid residue screening through sequence alignment, followed by homology modeling and biochemical confirmation was employed to elucidate the determinant...

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Veröffentlicht in:International journal of molecular sciences 2020-10, Vol.21 (21), p.7859
Hauptverfasser: Kim, Jung-Soo, Patel, Sanjay K S, Tiwari, Manish K, Lai, Chunfen, Kumar, Anurag, Kim, Young Sin, Kalia, Vipin Chandra, Lee, Jung-Kul
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Sprache:eng
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Zusammenfassung:Arylacetonitrilase from ATCC8750 (NitAF) hydrolyzes various arylacetonitriles to the corresponding carboxylic acids. A systematic strategy of amino acid residue screening through sequence alignment, followed by homology modeling and biochemical confirmation was employed to elucidate the determinant of NitAF catalytic efficiency. Substituting Phe-140 in NitAF (wild-type) to Trp did not change the catalytic efficiency toward phenylacetonitrile, an arylacetonitrile. The mutants with nonpolar aliphatic amino acids (Ala, Gly, Leu, or Val) at location 140 had lower activity, and those with charged amino acids (Asp, Glu, or Arg) exhibited nearly no activity for phenylacetonitrile. Molecular modeling showed that the hydrophobic benzene ring at position 140 supports a mechanism in which the thiol group of Cys-163 carries out a nucleophilic attack on a cyanocarbon of the substrate. Characterization of the role of the Phe-140 residue demonstrated the molecular determinant for the efficient formation of arylcarboxylic acids.
ISSN:1422-0067
1661-6596
1422-0067
DOI:10.3390/ijms21217859