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Expression and Characterization of Truncated Recombinant Human Cytochrome P450 2J2

  • Park, Hyoung-Goo (Department of Biological Sciences, Konkuk University) ;
  • Lim, Young-Ran (Department of Biological Sciences, Konkuk University) ;
  • Han, Songhee (Department of Biological Sciences, Konkuk University) ;
  • Kim, Donghak (Department of Biological Sciences, Konkuk University)
  • Received : 2014.03.17
  • Accepted : 2014.03.28
  • Published : 2014.03.31

Abstract

The human cytochrome P450 2J2 catalyzes an epoxygenase reaction to oxidize various fatty acids including arachidonic acid. In this study, three recombinant enzyme constructs of P450 2J2 were heterologously expressed in Escherichia coli and their P450 proteins were successfully purified using a $Ni^{2+}$-NTA affinity column. Deletion of 34 amino acid residues in N-terminus of P450 2J2 enzyme (2J2-D) produced the soluble enzyme located in the cytosolic fraction. The enzymatic analysis of this truncated protein indicated the typical spectral characteristics and functional properties of P450 2J2 enzyme. P450 2J2-D enzymes from soluble fraction catalyzed the oxidation reaction of terfenadine to the hydroxylated product. However, P450 2J2-D enzymes from membrane fraction did not support the P450 oxidation reaction although it displayed the characteristic CO-binding spectrum of P450. Our finding of these features in the N-terminal modified P450 2J2 enzyme could help understand the biological functions and the metabolic roles of P450 2J2 enzyme and make the crystallographic analysis of the P450 2J2 structure feasible for future studies.

Keywords

References

  1. Ortiz de Montellano, P.R. (2005) in Cytochrome P450: Structure, Mechanism, and Biochemistry. (Ortiz de Montellano, P.R. ed.). Plenum Press, New York. pp. 1-689.
  2. Guengerich, F.P. (2005) in Cytochrome P450: Structure, Mechanism, and Biochemistry. (Ortiz de Montellano, P.R. ed.). Plenum Press, New York, pp. 377-551.
  3. Omura, T. (1999) Forty years of cytochrome P450. Biochem. Biophys. Res. Commun., 266, 690-698. https://doi.org/10.1006/bbrc.1999.1887
  4. Wu, S., Moomaw, C.R., Tomer, K.B., Falck, J.R. and Zeldin, D.C. (1996) Molecular cloning and expression of CYP2J2, a human cytochrome P450 arachidonic acid epoxygenase highly expressed in heart. J. Biol. Chem., 271, 3460-3468. https://doi.org/10.1074/jbc.271.7.3460
  5. Xu, M., Ju, W., Hao, H., Wang, G. and Li, P. (2013) Cytochrome P450 2J2: distribution, function, regulation, genetic polymorphisms and clinical significance. Drug Metab. Rev., 45, 311-352. https://doi.org/10.3109/03602532.2013.806537
  6. Wu, S., Chen, W., Murphy, E., Gabel, S., Tomer, K.B., Foley, J., Steenbergen, C., Falck, J.R., Moomaw, C.R. and Zeldin, D.C. (1997) Molecular cloning, expression, and functional significance of a cytochrome P450 highly expressed in rat heart myocytes. J. Biol. Chem., 272, 12551-12559. https://doi.org/10.1074/jbc.272.19.12551
  7. Ma, J., Qu, W., Scarborough, P.E., Tomer, K.B., Moomaw, C.R., Maronpot, R., Davis, L.S., Breyer, M.D. and Zeldin, D.C. (1999) Molecular cloning, enzymatic characterization, developmental expression, and cellular localization of a mouse cytochrome P450 highly expressed in kidney. J. Biol. Chem., 274, 17777-17788. https://doi.org/10.1074/jbc.274.25.17777
  8. Messina, A., Nencioni, S., Gervasi, P.G., Gotlinger, K.H., Schwartzman, M.L. and Longo, V. (2010) Molecular cloning and enzymatic characterization of sheep CYP2J. Xenobiotica, 40, 109-118. https://doi.org/10.3109/00498250903410590
  9. Aiba, I., Yamasaki, T., Shinki, T., Izumi, S., Yamamoto, K., Yamada, S., Terato, H., Ide, H. and Ohyama, Y. (2006) Characterization of rat and human CYP2J enzymes as Vitamin D 25-hydroxylases. Steroids, 71, 849-856. https://doi.org/10.1016/j.steroids.2006.04.009
  10. Lee, C.A., Neul, D., Clouser-Roche, A., Dalvie, D., Wester, M.R., Jiang, Y., Jones, J.P. 3rd, Freiwald, S., Zientek, M. and Totah, R.A. (2010) Identification of novel substrates for human cytochrome P450 2J2. Drug Metab. Dispos., 38, 347-356. https://doi.org/10.1124/dmd.109.030270
  11. Lee, C.A., Jones, J.P. 3rd, Katayama, J., Kaspera, R., Jiang, Y., Freiwald, S., Smith, E., Walker, G.S. and Totah, R.A. (2012) Identifying a selective substrate and inhibitor pair for the evaluation of CYP2J2 activity. Drug Metab. Dispos., 40, 943-951. https://doi.org/10.1124/dmd.111.043505
  12. Dong, M.S., Bell, L.C., Guo, Z., Phillips, D.R., Blair, I.A. and Guengerich, F.P. (1996) Identification of retained N-formylmethionine in bacterial recombinant mammalian cytochrome P450 proteins with the N-terminal sequence MALLLAVFL...: roles of residues 3-5 in retention and membrane topology. Biochemistry, 35, 10031-10040. https://doi.org/10.1021/bi960873z
  13. Choi, S., Han, S., Lee, H., Chun, Y.J. and Kim, D. (2013) Evaluation of luminescent P450 analysis for directed evolution of human CYP4A11. Biomol. Ther., 21, 487-492. https://doi.org/10.4062/biomolther.2013.086
  14. Kim, J., Lim, Y.R., Han, S., Han, J.S., Chun, Y.J., Yun, C.H., Lee, C.H. and Kim, D. (2013) Functional influence of human CYP2D6 allelic variations: P34S, E418K, S486T, and R296C. Arch. Pharm. Res., 36, 1500-1506. https://doi.org/10.1007/s12272-013-0212-5
  15. Omura, T. and Sato, R. (1964) The Carbon Monoxide-Binding Pigment of Liver Microsomes. I. Evidence for Its Hemoprotein Nature. J. Biol. Chem., 239, 2370-2378.
  16. Lee, S.S., Jeong, H.E., Liu, K.H., Ryu, J.Y., Moon, T., Yoon, C.N., Oh, S.J., Yun, C.H. and Shin, J.G. (2005) Identification and functional characterization of novel CYP2J2 variants: G312R variant causes loss of enzyme catalytic activity. Pharmacogenet. Genomics, 15, 105-113. https://doi.org/10.1097/01213011-200502000-00006

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