The Influence of Cholesterol Incorporation and Removal on Lipid‐Bilayer Viscosity and Electron Transfer in Rat‐Liver Microsomes

9Citations
Citations of this article
6Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

The incorporation and removal of cholesterol from rat liver microsomes was used as a methodical approach to investigate the molecular organization of microsomal redox‐chains. It was shown that the incorporation of cholesterol in microsomes increases and removal of cholesterol decreases lipid bilayer viscosity as indicated from the rate of fluorescent probe‐pyrene eximerisation in cholesterol‐enriched and cholesterol‐depleted microsomes. The increase of membrane viscosity slows down the initial rates and decreases the rate constants of cytochrome b5 reduction by NAD(P)H, whereas the decrease of membrane viscosity enhances the initial rates and increases the rate constants of these reactions. The rates of cytochrome P450 reduction by reduced pyridine nucleotides do not depend on the viscosity of lipid bilayer. The incorporation and removal of cholesterol from microsomes was not followed by any essential changes in the rates of dimethylaniline N‐demethylation, aniline p‐hydroxylation, p‐nitroanisole O‐demethylation, oxygen consumption, oxidation of NADH and NADPH. Thus the reduction of cytochrome b5 by NADH and NADPH is the diffusion‐dependent reaction in the redoxchains of microsomes only. Copyright © 1983, Wiley Blackwell. All rights reserved

Cite

CITATION STYLE

APA

ARCHAKOV, A. I., BORODIN, E. A., DOBRETSOV, G. E., KARASEVICH, E. I., & KARYAKIN, A. V. (1983). The Influence of Cholesterol Incorporation and Removal on Lipid‐Bilayer Viscosity and Electron Transfer in Rat‐Liver Microsomes. European Journal of Biochemistry, 134(1), 89–95. https://doi.org/10.1111/j.1432-1033.1983.tb07535.x

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free