Thermodynamic parameters for the binding of divalent cations to gramicidin A incorporated into a lipid environment by Tl-205 nuclear magnetic resonance.

TitleThermodynamic parameters for the binding of divalent cations to gramicidin A incorporated into a lipid environment by Tl-205 nuclear magnetic resonance.
Publication TypeJournal Article
Year of Publication1989
AuthorsHinton JF, Fernandez JQ, Shungu DC, Millett FS
JournalBiophys J
Volume55
Issue2
Pagination327-30
Date Published1989 Feb
ISSN0006-3495
KeywordsCations, Gramicidin, Lipid Bilayers, Lysophosphatidylcholines, Magnetic Resonance Spectroscopy, Models, Biological, Protein Binding, Thermodynamics
Abstract

Thermodynamic parameters, enthalpy and entropy, for the binding of the divalent cations, Mg+2, Ca+2, Sr+2, Ba+2, and Cd+2, to gramicidin A, incorporated into lysophosphatidylcholine, have been determined using a combination of Tl-205 nuclear magnetic resonance spectroscopy and competition binding. The binding process is thermodynamically driven by the enthalpy and not the entropy. The enthalpy values are related to the process involving the transfer of cations from an aqueous environment to an amide environment. A comparison is made between the thermodynamic parameters for the binding of monovalent and divalent cations to gramicidin A to illustrate the channel blocking ability of the divalent cations with respect to monovalent cation transport.

DOI10.1016/S0006-3495(89)82808-5
Alternate JournalBiophys J
PubMed ID2469486
PubMed Central IDPMC1330474
Related Institute: 
MRI Research Institute (MRIRI)

Weill Cornell Medicine
Department of Radiology
525 East 68th Street New York, NY 10065