Kinetics of Acid-Induced Spectral Changes in the GFPmut2 Chromophore
- 2 December 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 127 (2) , 626-635
- https://doi.org/10.1021/ja045400r
Abstract
We have used a nanosecond pH-jump technique, coupled with simultaneous transient absorption and fluorescence emission detection, to characterize the dynamics of the acid-induced spectral changes in the GFPmut2 chromophore. Disappearance of the absorbance at 488 nm and the green fluorescence emission occurs with a thermally activated, double exponential relaxation. To understand the source of the two transients we have introduced mutations in amino acid residues that interact with the chromophore (H148G, T203V, and E222Q). Results indicate that the faster transient is associated with proton binding from the solution, while the second process, smaller in amplitude, is attributed to structural rearrangement of the amino acids surrounding the chromophore. The protonation rate shows a 3-fold increase for the H148G mutant, demonstrating that His148 plays a key role in protecting the chromophore from the solvent. The deprotonation rate for T203V is an order of magnitude smaller, showing that the hydrogen bond with the hydroxyl of Thr203 is important in stabilizing the deprotonated form of the chromophore. A kinetic model suggests that, in addition to protecting the chromophore from the solvent, His148 may act as the primary acceptor for the protons on the way to the chromophore.Keywords
This publication has 50 references indexed in Scilit:
- Fast Events in Protein Folding: Structural Volume Changes Accompanying the Early Events in the N→I Transition of Apomyoglobin Induced by Ultrafast pH JumpBiophysical Journal, 2000
- Structural and Spectral Response of Green Fluorescent Protein Variants to Changes in pH,Biochemistry, 1999
- THE GREEN FLUORESCENT PROTEINAnnual Review of Biochemistry, 1998
- TIME-RESOLVED DYNAMICS OF PROTON TRANSFER IN PROTEINOUS SYSTEMSAnnual Review of Physical Chemistry, 1997
- FACS-optimized mutants of the green fluorescent protein (GFP)Gene, 1996
- Green‐fluorescent protein mutants with altered fluorescence excitation spectraFEBS Letters, 1995
- Covalently Bound pH-Indicator Dyes at Selected Extracellular or Cytoplasmic Sites in Bacteriorhodopsin. 1. Proton Migration Along the Surface of Bacteriorhodopsin Micelles and Its Delayed Transfer from Surface to BulkBiochemistry, 1994
- Proton migration along the membrane surface and retarded surface to bulk transferNature, 1994
- 2H NMR study of the behaviour of water in a reversed micellar system. Hydrogen bond breaking and clathrate formation by an inhalation anaestheticMagnetic Resonance in Chemistry, 1989
- Phase-dissipative mechanisms for laser-induced surface desorption/dissociation processesThe Journal of Physical Chemistry, 1984