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Changes in electrostatic surface potential of Na+/K+-ATPase cytoplasmic headpiece induced by cytoplasmic ligand(s) binding
M. Kubala, L. Grycová, Z. Lánský, P. Sklenovský, M. Janovská, M. Otyepka, J. Teisinger
Language English Country United States
Document type Research Support, Non-U.S. Gov't
NLK
Cell Press Free Archives
from 1960-01-01 to 1 year ago
Free Medical Journals
from 1960 to 1 year ago
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from 1960 to 12 months ago
PubMed Central
from 1960 to 1 year ago
Europe PubMed Central
from 1960 to 1 year ago
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from 1960-09-01
- MeSH
- Adenosine Triphosphate pharmacology metabolism MeSH
- Acrylamides pharmacology metabolism MeSH
- Cytoplasm metabolism MeSH
- Fluorescence MeSH
- Magnesium pharmacology metabolism MeSH
- Iodides pharmacology metabolism MeSH
- Protein Conformation drug effects MeSH
- Ligands MeSH
- Models, Molecular MeSH
- Mutation MeSH
- Mice MeSH
- Surface Properties MeSH
- Sodium-Potassium-Exchanging ATPase genetics chemistry metabolism MeSH
- Static Electricity MeSH
- Animals MeSH
- Check Tag
- Mice MeSH
- Animals MeSH
- Publication type
- Research Support, Non-U.S. Gov't MeSH
A set of single-tryptophan mutants of the Na(+)/K(+)-ATPase isolated, large cytoplasmic loop connecting transmembrane helices M4 and M5 (C45) was prepared to monitor effects of the natural cytoplasmic ligands (i.e., Mg(2+) and/or ATP) binding. We introduced a novel method for the monitoring of the changes in the electrostatic surface potential (ESP) induced by ligand binding, using the quenching of the intrinsic tryptophan fluorescence by acrylamide or iodide. This approach opens a new way to understanding the interactions within the proteins. Our experiments revealed that the C45 conformation in the presence of the ATP (without magnesium) substantially differed from the conformation in the presence of Mg(2+) or MgATP or in the absence of any ligand not only in the sense of geometry but also in the sense of the ESP. Notably, the set of ESP-sensitive residues was different from the set of geometry-sensitive residues. Moreover, our data indicate that the effect of the ligand binding is not restricted only to the close environment of the binding site and that the information is in fact transmitted also to the distal parts of the molecule. This property could be important for the communication between the cytoplasmic headpiece and the cation binding sites located within the transmembrane domain.
References provided by Crossref.org
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- $a A set of single-tryptophan mutants of the Na(+)/K(+)-ATPase isolated, large cytoplasmic loop connecting transmembrane helices M4 and M5 (C45) was prepared to monitor effects of the natural cytoplasmic ligands (i.e., Mg(2+) and/or ATP) binding. We introduced a novel method for the monitoring of the changes in the electrostatic surface potential (ESP) induced by ligand binding, using the quenching of the intrinsic tryptophan fluorescence by acrylamide or iodide. This approach opens a new way to understanding the interactions within the proteins. Our experiments revealed that the C45 conformation in the presence of the ATP (without magnesium) substantially differed from the conformation in the presence of Mg(2+) or MgATP or in the absence of any ligand not only in the sense of geometry but also in the sense of the ESP. Notably, the set of ESP-sensitive residues was different from the set of geometry-sensitive residues. Moreover, our data indicate that the effect of the ligand binding is not restricted only to the close environment of the binding site and that the information is in fact transmitted also to the distal parts of the molecule. This property could be important for the communication between the cytoplasmic headpiece and the cation binding sites located within the transmembrane domain.
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