학술논문

Interactions of phospholipase D and cytochrome P450 protein stability
Document Type
Journal Article
Author
Source
Biochemical Pharmacology; 68; 3; Other Information: PBD: 1 Aug 2004
Subject
59 BASIC BIOLOGICAL SCIENCES ANIMALS
CYTOCHROMES
IN VIVO
INCUBATION
LIVER CELLS
MICROSOMES
PHENANTHROLINES
PHOSPHOLIPIDS
PROTEINS
STABILITY CYTOCHROME P450
PHOSPHOLIPASE
CYTOCHROME P450
Language
English
ISSN
0006-2952
Abstract
Previous studies have suggested a relationship between cytochrome P450 (P450) 3A (CYP3A) conformation and the phospholipid composition of the associated membrane. In this study, we utilized a novel microsomal incubation system that mimics many of the characteristics of CYP3A degradation pathway that have been observed in vivo and in cultured cells to study the effects of phospholipid composition on protein stability. We found that addition of phosphatidylcholine-specific phospholipase D (PLD) stabilized CYP3A in this system, but that phosphatidylinositol-specific phospholipase C (PLC) was without effect. Addition of phosphatidic acid also stabilized CYP3A protein in the microsomes. The use of 1,10-phenanthroline (phenanthroline), an inhibitor of PLD activity, decreased CYP3A stability in incubated microsomes. Similarly, 6-h treatment of primary cultures of rat hepatocytes with phenanthroline resulted in nearly complete loss of CYP3A protein. Treatment of rats with nicardipine or dimethylsulfoxide (DMSO), which have been shown to affect CYP3A stability, altered the phospholipid composition of hepatic microsomes. It did not appear, though, that the changes in phospholipid composition that resulted from these in vivo treatments accounted for the change in CYP3A stability observed in hepatic microsomes from these animals.