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  4. Membrane interaction of TNF is not sufficient to trigger increase in membrane conductance in mammalian cells
 
research article

Membrane interaction of TNF is not sufficient to trigger increase in membrane conductance in mammalian cells

van der Goot, F. G.  
•
Pugin, J.
•
Hribar, M.
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1999
FEBS Letters

Tumor necrosis factor TNF can trigger increases in membrane conductance of mammalian cells in a receptor-independent manner via its lectin-like domain. A lectin-deficient TNF mutant, lacking this activity, was able to bind to artificial liposomes in a pH-dependent manner, but not to insert into the bilayer, just like wild type TNF. A peptide mimicking the lectin-like domain, which can still trigger increases in membrane currents in cells, failed to interact with liposomes. Thus, the capacity of TNF to trigger increases in membrane conductance in mammalian cells does not correlate with its ability to interact with membranes, suggesting that the cytokine does not form channels itself, but rather interacts with endogenous ion channels or with plasma membrane proteins that are coupled to ion channels.

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Type
research article
DOI
10.1016/S0014-5793(99)01294-6
Author(s)
van der Goot, F. G.  
Pugin, J.
Hribar, M.
Fransen, L.
Dunant, Y.
De Baetselier, P.
Bloc, A.
Lucas, R.
Date Issued

1999

Published in
FEBS Letters
Volume

460

Issue

1

Start page

107

End page

11

Subjects

Amino Acid Sequence

•

Animals

•

Cell Membrane/*metabolism

•

Chlorides/metabolism

•

Circular Dichroism

•

Escherichia coli

•

Hydrogen-Ion Concentration

•

Ion Channels/metabolism

•

Liposomes/metabolism

•

Mice

•

Models

•

Molecular

•

Molecular Sequence Data

•

Mutation

•

Peptide Fragments/metabolism

•

Protein Binding

•

Protein Denaturation

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Protein Folding

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Protein Structure

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Secondary

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Recombinant Proteins

•

Tumor Necrosis Factor-alpha/*chemistry/genetics

Note

Department of Biochemistry, Sciences II, University of Geneva, Switzerland. gisou.vandergoot@biochem.unige.ch

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
VDG  
Available on Infoscience
January 30, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/34610
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