Biochemical characterization of variants of canine CYP1A1 using heterologous expression.

J Vet Med Sci

College of Veterinary Medicine, Research Institute for Veterinary Sciences, BK21plus Program for Creative Veterinary Science Research, Seoul National University, Seoul, 08862, Republic of Korea.

Published: August 2017

AI Article Synopsis

  • Cytochrome P450 1A1 (CYP1A1) is an enzyme that helps break down environmental contaminants, and two variants in dogs were studied, named Sap1 and Sap2, differing by a single amino acid.
  • The variant Sap2, which has a Trp50Leu substitution, showed higher levels of heme and CYP holoprotein but had lower enzyme activity compared to Sap1, despite having similar total protein levels.
  • The findings indicate that while the Trp50Leu change increases the amount of functional CYP1A1, it reduces the enzyme's effectiveness due to the smaller size of leucine compared to tryptophan.

Article Abstract

Cytochrome P450 1A1 (CYP1A1) is a heme-containing mono-oxygenase involved in metabolism of environmental contaminants. Two variants of dog CYP1A1 with a single residue difference were identified and designated Sap1 and Sap2. Compared with Sap1, Sap2 had a Trp50Leu substitution. The biochemical characteristics of the variants were comparatively analyzed using heterologous expression in Escherichia coli. The membrane fraction of E. coli expressing Sap2 exhibited higher CYP holoprotein and heme contents than the Sap1-containing membranes, although the level of total CYP1A1 protein (i.e., apoprotein + holoprotein) was comparable between the groups. As normalized to holo-CYP content, the Sap2-expressing membranes showed lower CYP1A1-specific enzyme activities, such as 7-ethoxyresorufin O-dealkylation (EROD), than the Sap1 group. In single substitution variants of residue 50, proteins with hydrophobic residues having mass similar to Leu exhibited lower EROD activities than those with hydrophobic residues having larger mass than Leu. In addition, variants with polar or charged residues having mass similar to Leu showed activities that were comparable to those of Sap2. Taken together, these findings suggest that the Trp50Leu substitution leads to an enhancement of holo-CYP1A1 formation, but diminishes the enzyme activity because of the small size of Leu compared with Trp.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5573817PMC
http://dx.doi.org/10.1292/jvms.17-0192DOI Listing

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