A molecular understanding of volatile anesthetic mechanisms of action will require structural descriptions of anesthetic-protein complexes. Porcine odorant binding protein is a 157 residue member of the lipocalin family that features a large beta-barrel internal cavity (515 +/- 30 angstroms(3)) lined predominantly by aromatic and aliphatic residues. Halothane binding to the beta-barrel cavity was determined using fluorescence quenching of Trp16, and a competitive binding assay with 1-aminoanthracene. In addition, the binding of halothane and isoflurane were characterized thermodynamically using isothermal titration calorimetry. Hydrogen exchange was used to evaluate the effects of bound halothane and isoflurane on global protein dynamics. H...
General anesthetics have played a pivotal role in the history of medicine. Despite accounts of their...
The molecular mechanism of general anesthesia remains unknown. Potential anesthetic target sites inc...
Despite the widespread clinical use of anesthetics since the 19th century, a clear understanding of ...
A molecular understanding of volatile anesthetic mechanisms of action will require structural descri...
AbstractA molecular understanding of volatile anesthetic mechanisms of action will require structura...
ABSTRACT A molecular understanding of volatile anesthetic mechanisms of action will require structur...
AbstractTo understand further the weak molecular interactions between inhaled anesthetics and protei...
AbstractThe structural features of volatile anesthetic binding sites on proteins are being examined ...
AbstractComputational methods designed to predict and visualize ligand protein binding interactions ...
The molecular pharmacology of inhalational anesthetics remains poorly understood. Despite accumulati...
AbstractEarlier work demonstrated that a water-soluble four-helix bundle protein designed with a cav...
AbstractAs a model of the protein targets for volatile anesthetics, the dimeric four-α-helix bundle,...
AbstractThe intrinsic tryptophan (Trp) fluorescence of the plasma membrane Ca2+-ATPase (PMCA) is sig...
AbstractWe demonstrate that cyano-phenylalanine (PheCN) can be utilized to probe the binding of the ...
General anesthetics have played a pivotal role in the history of medicine. Despite accounts of their...
General anesthetics have played a pivotal role in the history of medicine. Despite accounts of their...
The molecular mechanism of general anesthesia remains unknown. Potential anesthetic target sites inc...
Despite the widespread clinical use of anesthetics since the 19th century, a clear understanding of ...
A molecular understanding of volatile anesthetic mechanisms of action will require structural descri...
AbstractA molecular understanding of volatile anesthetic mechanisms of action will require structura...
ABSTRACT A molecular understanding of volatile anesthetic mechanisms of action will require structur...
AbstractTo understand further the weak molecular interactions between inhaled anesthetics and protei...
AbstractThe structural features of volatile anesthetic binding sites on proteins are being examined ...
AbstractComputational methods designed to predict and visualize ligand protein binding interactions ...
The molecular pharmacology of inhalational anesthetics remains poorly understood. Despite accumulati...
AbstractEarlier work demonstrated that a water-soluble four-helix bundle protein designed with a cav...
AbstractAs a model of the protein targets for volatile anesthetics, the dimeric four-α-helix bundle,...
AbstractThe intrinsic tryptophan (Trp) fluorescence of the plasma membrane Ca2+-ATPase (PMCA) is sig...
AbstractWe demonstrate that cyano-phenylalanine (PheCN) can be utilized to probe the binding of the ...
General anesthetics have played a pivotal role in the history of medicine. Despite accounts of their...
General anesthetics have played a pivotal role in the history of medicine. Despite accounts of their...
The molecular mechanism of general anesthesia remains unknown. Potential anesthetic target sites inc...
Despite the widespread clinical use of anesthetics since the 19th century, a clear understanding of ...