TY - JOUR
T1 - Mrs2p is an essential component of the major electrophoretic Mg2+ influx system in mitochondria
AU - Kolisek, Martin
AU - Zsurka, Gabor
AU - Samaj, Jozef
AU - Weghuber, Julian
AU - Schweyen, Rudolf J.
AU - Schweigel, Monika
N1 - Copyright:
Copyright 2008 Elsevier B.V., All rights reserved.
PY - 2003/3/17
Y1 - 2003/3/17
N2 - Steady-state concentrations of mitochondrial Mg2+ previously have been shown to vary with the expression of Mrs2p, a component of the inner mitochondrial membrane with two transmembrane domains. While its structural and functional similarity to the bacterial Mg2+ transport protein CorA suggested a role for Mrs2p in Mg2+ influx into the organelle, other functions in cation homeostasis could not be excluded. Making use of the fluorescent dye mag-fura 2 to measure free Mg2+ concentrations continuously, we describe here a high capacity, rapid Mg2+ influx system in isolated yeast mitochondria, driven by the mitochondrial membrane potential ΔΨ and inhibited by cobalt(III)hexaammine. Overexpression of Mrs2p increases influx rates 5-fold, while the deletion of the MRS2 gene abolishes this high capacity Mg2+ influx. Mg2+ efflux from isolated mitochondria, observed with low ΔΨ only, also requires the presence of Mrs2p. Cross-linking experiments revealed the presence of Mrs2p-containing complexes in the mitochondrial membrane, probably constituting Mrs2p homooligomers. Taken together, these findings characterize Mrs2p as the first molecularly identified metal ion channel protein in the inner mitochondrial membrane.
AB - Steady-state concentrations of mitochondrial Mg2+ previously have been shown to vary with the expression of Mrs2p, a component of the inner mitochondrial membrane with two transmembrane domains. While its structural and functional similarity to the bacterial Mg2+ transport protein CorA suggested a role for Mrs2p in Mg2+ influx into the organelle, other functions in cation homeostasis could not be excluded. Making use of the fluorescent dye mag-fura 2 to measure free Mg2+ concentrations continuously, we describe here a high capacity, rapid Mg2+ influx system in isolated yeast mitochondria, driven by the mitochondrial membrane potential ΔΨ and inhibited by cobalt(III)hexaammine. Overexpression of Mrs2p increases influx rates 5-fold, while the deletion of the MRS2 gene abolishes this high capacity Mg2+ influx. Mg2+ efflux from isolated mitochondria, observed with low ΔΨ only, also requires the presence of Mrs2p. Cross-linking experiments revealed the presence of Mrs2p-containing complexes in the mitochondrial membrane, probably constituting Mrs2p homooligomers. Taken together, these findings characterize Mrs2p as the first molecularly identified metal ion channel protein in the inner mitochondrial membrane.
KW - Mag-fura 2/membrane potential ΔΨ
KW - Mitochondrial Mg influx
KW - Mrs2Δ mutant
KW - Protein cross-linking
KW - Ion Channels
KW - Mitochondria/metabolism
KW - Cross-Linking Reagents/chemistry
KW - Fura-2/analogs & derivatives
KW - Membrane Proteins/genetics
KW - Mitochondrial Proteins
KW - Saccharomyces cerevisiae/genetics
KW - Biological Transport
KW - Intracellular Membranes/metabolism
KW - Membrane Potentials
KW - Cobalt/antagonists & inhibitors
KW - Carrier Proteins/genetics
KW - Gene Deletion
KW - Magnesium/metabolism
KW - Saccharomyces cerevisiae Proteins/genetics
KW - Electrophoresis
KW - Genes, Fungal
KW - Mutation
KW - Nuclear Proteins/genetics
KW - Recombinant Fusion Proteins/metabolism
UR - http://www.scopus.com/inward/record.url?scp=0037451285&partnerID=8YFLogxK
U2 - 10.1093/emboj/cdg122
DO - 10.1093/emboj/cdg122
M3 - Article
C2 - 12628916
SN - 0261-4189
VL - 22
SP - 1235
EP - 1244
JO - EMBO Journal
JF - EMBO Journal
IS - 6
ER -