4.6 Article

Effects of alcohol-induced increase in CYP2E1 content in human liver microsomes on the activity and cooperativity of CYP3A4

Journal

ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS
Volume 698, Issue -, Pages -

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.abb.2020.108677

Keywords

Cytochrome P450; CYP2E1; CYP3A4; Oligomerization; Cooperativity; Protein-protein interaction; Alcohol-drug interactions; Alcohol exposure

Funding

  1. National Institute On Alcohol Abuse And Alcoholism of the National Institutes of Health [R21AA024548]
  2. State of Washington Initiative Measure [171]

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The study found that the increase in CYP2E1 content significantly affects the metabolism rate of certain substrates and weakens homotropic cooperativity. Chronic alcohol exposure may impact the pharmacokinetics of drugs metabolized by CYP3A4.
We investigate the effect of the alcohol-induced increase in the content of CYP2E1 in human liver microsomes (HLM) on the function of CYP3A4. Membrane incorporation of the purified CYP2E1 into HLM considerably increases the rate of metabolism of 7-benzyloxyquinoline (BQ) and attenuates the homotropic cooperativity observed with this CYP3A4-specific substrate. It also eliminates the activating effect of alpha-naphthoflavone (ANF) seen in some HLM samples. To probe the physiological relevance of these effects, we compared three pooled preparations of HLM from normal donors (HLM-N) with a pooled preparation from ten heavy alcohol consumers (HLM-A). The composition of the P450 pool in all samples was characterized by the mass-spectrometric determination of 11 cytochrome P450 species. The fractional content of CYP2E1 in HLM-A was from 2.0 to 3.4 times higher than in HLM-N. In contrast, the content of CYP3A4 in HLM-A was the lowest among all samples. Despite that, HLM-A exhibited a much higher metabolism rate and a lower homotropic cooperativity with BQ, similar to CYP2E1-enriched HLM-N. To substantiate the involvement of interactions between CYP2E1 and CYP3A4 in these effects, we probed hetero-association of these proteins in CYP3A4-containing Supersomes (TM) with a technique employing CYP2E1 labeled with BODIPY-618 maleimide. These experiments evinced the interactions between the two enzymes and revealed an inhibitory effect of ANF on their association. Our results demonstrate that the functional properties of CYP3A4 are fundamentally dependent on the composition of the cytochrome P450 ensemble and suggest a possible impact of chronic alcohol exposure on the pharmacokinetics of drugs metabolized by CYP3A4.

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