Literature DB >> 20396964

Molecular characterization of a novel bacterial aryl acylamidase belonging to the amidase signature enzyme family.

Hyeok-Jin Ko1, Eun Woo Lee, Won-Gi Bang, Cheol-Koo Lee, Kyoung Heon Kim, In-Geol Choi.   

Abstract

In seeking aryl acylamidase (EC 3.5.1.13) acting on an amide bond in p-acetaminophenol (Tylenol), we identified a novel gene encoding 496 residues of a protein. The gene revealed a conserved amidase signature region with a canonical catalytic triad. The gene was expressed in E. coli and characterized for its biochemical properties. The optimum pH and temperature for the activity on p-acetaminophenol were 10 and 37 degrees C, respectively. The half-life of enzyme activity at 37 degrees C was 192 h and 90% of its activity remained after 3 h incubation at 40 degrees C. Divalent metals was found to inhibit the activity of enzyme. The K (m) values for various aryl acylamides such as 4-nitroacetanilide, p-acetaminophenol, phenacetin, 4-chloroacetanilide and acetanilide were 0.10, 0.32, 0.83, 1.9 and 19 mM, respectively. The reverse reaction activity (amide synthesis) was also examined using various chain lengths (C(1) approximately C(4) and C(10)) of carboxylic donors and aniline as substrates. These kinetic parameters and substrate specificity in forward and reverse reaction indicated that the aryl acylamidase in this study has a preference for aryl substrate having polar functional groups and hydrophobic carboxylic donors.

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Year:  2010        PMID: 20396964     DOI: 10.1007/s10059-010-0060-9

Source DB:  PubMed          Journal:  Mol Cells        ISSN: 1016-8478            Impact factor:   5.034


  8 in total

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3.  Cloning of a novel arylamidase gene from Paracoccus sp. strain FLN-7 that hydrolyzes amide pesticides.

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4.  Purification and characterization of a thermostable aliphatic amidase from the hyperthermophilic archaeon Pyrococcus yayanosii CH1.

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Review 6.  Taxon- and Site-Specific Melatonin Catabolism.

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7.  Mineralization of the herbicide swep by a two-strain consortium and characterization of a new amidase for hydrolyzing swep.

Authors:  Long Zhang; Ping Hang; Xiyi Zhou; Chen Dai; Ziyi He; Jiandong Jiang
Journal:  Microb Cell Fact       Date:  2020-01-07       Impact factor: 5.328

8.  Microbial paracetamol degradation involves a high diversity of novel amidase enzyme candidates.

Authors:  Ana B Rios-Miguel; Garrett J Smith; Geert Cremers; Theo van Alen; Mike S M Jetten; Huub J M Op den Camp; Cornelia U Welte
Journal:  Water Res X       Date:  2022-08-04
  8 in total

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