Retinal Binding during Folding and Assembly of the Membrane Protein Bacteriorhodopsin
- 1 January 1996
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 35 (18) , 5902-5909
- https://doi.org/10.1021/bi960129e
Abstract
The factors driving folding and assembly of integral membrane proteins are largely unknown. In order to determine the role that the retinal chromophore plays in assembly of bacteriorhodopsin, we have determined the kinetics and thermodynamics of retinal binding during regeneration of bacteriorhodopsin, from denatured apoprotein, in vitro. Regeneration is initiated by rapid, stopped-flow, mixing of the denatured apoprotein bacterioopsin in sodium dodecyl sulfate micelles with mixed detergent/lipid micelles containing retinal. Regeneration kinetics are measured by time-resolving changes in protein fluorescence. The dependence of each kinetic component on retinal concentration is determined. Only one experimentally observed rate constant is dependent on retinal concentration, leading to identification of only one second-order reaction involving retinal and bacterioopsin. This reaction occurs after a rate-limiting step in bacterioopsin folding, and results in formation of a noncovalent retinal/protein complex. The free energy change of this retinal binding step is determined, showing that thermodynamic information can be obtained on transient intermediates involved in membrane protein regeneration.Keywords
This publication has 5 references indexed in Scilit:
- Specificity and promiscuity in membrane helix interactionsQuarterly Reviews of Biophysics, 1994
- In vitro mutagenesis and the search for structure-function relationships among G protein-coupled receptorsBiochemical Journal, 1992
- Model for the structure of bacteriorhodopsin based on high-resolution electron cryo-microscopyJournal of Molecular Biology, 1990
- Bacteriorhodopsin Mutants of Halobacterium sp. GRBPublished by Elsevier ,1989
- Two pumps, one principle: light-driven ion transport in halobacteriaTrends in Biochemical Sciences, 1989