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PMID: 8988019 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Chloride channel properties of the uncoupling protein from brown adipose tissue mitochondria: a patch-clamp study.

Biochemistry ·Vol. 35 ·No. 51 ·1996-12-24 ·Pages 16806-14

Huang SG, Klingenberg M

Abstract

The uncoupling protein (UCP) from brown adipose tissue mitochondria possesses H+ and Cl- transport activities [reviewed in Klingenberg, M. (1990) Trends Biochem. Sci. 15, 108-112]. Being a member of a mitochondrial carrier family, the transport of H+ and Cl- is carrier-like, i.e., much slower as compared to channels. Here we report that UCP reconstituted into giant liposomes displays stable chloride channel properties under patch-clamp conditions. The transport inhibitors (GTP, GDP, ATP, and ADP) also inhibit this channel in a reversible way, showing that the channel activity is associated with UCP. The slightly inward-rectifying chloride channel has a unit conductance of approximately 75 pS in symmetrical 100 mM KCl and closes at high positive potentials on the matrix side of UCP. Channel gatings switch from slow open-closure transitions to fast flickerings as the holding potential increases over +60 mV. Substitution experiments reveal a strong discrimination against cations [P(Cl-)/P(K+) approximately 17] and a permeability ratio order of Cl- > Br- > F- > SCN- > I- > NO3- > SO4(2-) > HPO4(2-) > gluconate. Nucleotide inhibition studies indicate that 70% UCP molecules had its matrix side oriented outside in the giant liposomes. Fatty acids, pH, divalent cations (Ca2+ and Mg2+), and mersalyl do not influence these Cl- currents. The Cl- channel can be blocked by 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid (DIDS) from the matrix side of UCP. The data are consistent with a dimer consisting of two monomeric 75-pS Cl- channels or with a monomeric 150-pS channel having a 50% subconductance state. The channel current increases with Cl- concentration showing a typical saturation curve with Km approximately 63 mM and gmax approximately 120 pS (100 mM KCl in the pipet). The Cl- conductance measured under these conditions is 6 orders of magnitude higher than the Cl- transport activity reported earlier, suggesting that the UCP has the potential of behaving as an anion channel.

MeSH Terms
4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid/pharmacology Adipose Tissue, Brown/metabolism Animals Carrier Proteins/antagonists & inhibitors,chemistry,metabolism Chloride Channels/antagonists & inhibitors,chemistry,metabolism Electric Conductivity Fatty Acids/pharmacology Hydrogen-Ion Concentration In Vitro Techniques Ion Channels/chemistry,metabolism Ion Transport/drug effects Kinetics Liposomes Membrane Proteins/antagonists & inhibitors,chemistry,metabolism Mersalyl/pharmacology Mitochondria/metabolism Mitochondrial Proteins Patch-Clamp Techniques Purine Nucleotides/pharmacology Uncoupling Agents/antagonists & inhibitors,chemistry,metabolism Uncoupling Protein 1
Chemicals
Carrier Proteins Chloride Channels Fatty Acids Ion Channels Liposomes Membrane Proteins Mitochondrial Proteins Purine Nucleotides Uncoupling Agents Uncoupling Protein 1 Mersalyl 4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Huang S G
Institute of Physical Biochemistry, University of Munich, Germany. sghuang@pbm.med.uni-muenchen.de
Klingenberg M
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
1996-12-24
Pages
16806-14
Language
English
Region
United States
NLM ID
0370623
Subset
IM
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