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PMID: 10092641 Published · ppublish English Journal Article

Differential mechanisms of retinoid transfer from cellular retinol binding proteins types I and II to phospholipid membranes.

The Journal of biological chemistry ·Vol. 274 ·No. 14 ·1999-04-02 ·Pages 9556-63

Herr FM, Li E, Weinberg RB, Cook VR, Storch J

Abstract

Cellular retinol-binding proteins types I and II (CRBP-I and CRBP-II) are known to differentially facilitate retinoid metabolism by several membrane-associated enzymes. The mechanism of ligand transfer to phospholipid small unilamellar vesicles was compared in order to determine whether differences in ligand trafficking properties could underlie these functional differences. Unidirectional transfer of retinol from the CRBPs to membranes was monitored by following the increase in intrinsic protein fluorescence that occurs upon ligand dissociation. The results showed that ligand transfer of retinol from CRBP-I was >5-fold faster than transfer from CRBP-II. For both proteins, transfer of the other naturally occurring retinoid, retinaldehyde, was 4-5-fold faster than transfer of retinol. Rates of ligand transfer from CRBP-I to small unilamellar vesicles increased with increasing concentration of acceptor membrane and with the incorporation of the anionic lipids cardiolipin or phosphatidylserine into membranes. In contrast, transfer from CRBP-II was unaffected by either membrane concentration or composition. Preincubation of anionic vesicles with CRBP-I was able to prevent cytochrome c, a peripheral membrane protein, from binding, whereas CRBP-II was ineffective. In addition, monolayer exclusion experiments demonstrated differences in the rate and magnitude of the CRBP interactions with phospholipid membranes. These results suggest that the mechanisms of ligand transfer from CRBP-I and CRBP-II to membranes are markedly different as follows: transfer from CRBP-I may involve and require effective collisional interactions with membranes, whereas a diffusional process primarily mediates transfer from CRBP-II. These differences may help account for their distinct functional roles in the modulation of intracellular retinoid metabolism.

MeSH Terms
Adsorption Biological Transport Cytochrome c Group/metabolism Kinetics Membrane Lipids/metabolism Models, Molecular Osmolar Concentration Phospholipids/metabolism Retinaldehyde/metabolism Retinoids/metabolism Retinol-Binding Proteins/metabolism Retinol-Binding Proteins, Cellular Vitamin A/metabolism
Chemicals
Cytochrome c Group Membrane Lipids Phospholipids Retinoids Retinol-Binding Proteins Retinol-Binding Proteins, Cellular Vitamin A Retinaldehyde
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Herr F M
Department of Nutritional Sciences, Rutgers University, Cook College, New Brunswick, New Jersey 08901, USA.
Li E
Weinberg R B
Cook V R
Storch J
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1999-04-02
Pages
9556-63
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIDDK NIH HHS · R01 DK038389 · United States
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