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PMID: 7507718 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Probing alamethicin channels with water-soluble polymers. Size-modulated osmotic action.

Biophysical journal ·Vol. 65 ·No. 5 ·1993-11-00 ·Pages 2097-105

Vodyanoy I, Bezrukov SM, Parsegian VA

Abstract

Contrary to expectations based on heightened solution viscosity, alamethicin channels appear to speed up in the presence of water soluble polyethylene glycols (PEGs) and dextrans. Specifically, added polymers reduce the probabilities of transition to higher-conductance states but do not change channel lifetimes. They thereby shorten the duration of current "bursts." These modified probabilities and kinetics reveal the action of polymer osmotic stress to suppress channel formation. The osmotic action of large, fully excluded polymers shows that some 3,000 A3 of water are taken up by the channel from the solution upon each transition to an adjacent higher-conductance state. The partial osmotic action of incompletely excluded polymers reveals the extent of exclusion for different-size polymers. The partial exclusion thus measured agrees remarkably well with estimates using data on reduction of single-channel conductance by current-impeding polymers. One can relate the degree of each polymer's exclusion to its size and to the radius of the channel pore.

MeSH Terms
Alamethicin/chemistry Biophysical Phenomena Biophysics Dextrans/chemistry Electric Conductivity Hydrostatic Pressure In Vitro Techniques Ion Channels/chemistry Molecular Probes Molecular Weight Osmotic Pressure Particle Size Polyethylene Glycols/chemistry Polymers/chemistry Solubility Viscosity Water
Chemicals
Dextrans Ion Channels Molecular Probes Polymers Water Alamethicin Polyethylene Glycols
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Vodyanoy I
Division of Intramural Research, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892.
Bezrukov S M
Parsegian V A
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12 references, click to expand
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Article Info
Journal
Biophysical journal
Abbr.
Biophys J
ISSN
0006-3495
Published
1993-11-00
Pages
2097-105
Language
English
Region
United States
NLM ID
0370626
PMCID
PMC1225945
Subset
IM
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