Deletion of amino acids 261-269 in the brown fat uncoupling protein converts the carrier into a pore

被引:33
作者
GonzalezBarroso, MM
Fleury, C
LeviMeyrueis, C
Zaragoza, P
Bouillaud, F
Rial, E
机构
[1] CSIC, CTR INVEST BIOL, E-28006 MADRID, SPAIN
[2] CNRS, CEREMOD, MEUDON, FRANCE
关键词
D O I
10.1021/bi971104y
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The uncoupling protein (UCP) from brown adipose tissue mitochondria is a carrier that catalyzes proton re-entry into the matrix and thus dissipates the proton electrochemical potential gradient as heat. UCP activity is regulated: purine nucleotides inhibit while fatty acids activate transport. We have previously reported that sequence 261-269 of the UCP has a closely related counterpart in the adenine nucleotide translocator, as well as in the DNA binding domain of the estrogen receptor, Site-directed mutagenesis of the UCP showed that deletion of amino acids 267-269 in the UCP abolished nucleotide inhibition [Bouillaud, F., et al. (1994) EMBO J. 13, 1990-1997], Complete deletion of the homologous domain (UCP Delta 9) produced a highly deleterious mutant that collapsed the mitochondrial membrane potential and halted yeast growth. Since under our growth conditions revertants appeared rapidly, it was not possible to characterize this mutant, In this article, we have designed conditions to isolate mitochondria containing significant amounts of the UCP Delta 9 mutant protein. These mitochondria show no respiratory control and are insensitive to nucleotides. Investigation of the permeability properties revealed that UCP Delta 9 mitochondria swell rapidly in potassium salts in the absence of valinomycin, thus indicating a loss of specificity. The size exclusion properties of this mutant were determined with polyethylene glycols of various molecular masses (400-20000 Da), and it was found that UCP Delta 9 can catalyze permeation of molecules of up to 1000 Da, We conclude that the deletion of amino acids 261-269 converts the UCP into an unspecific pore.
引用
收藏
页码:10930 / 10935
页数:6
相关论文
共 42 条
[1]   SOLUTE CARRIERS INVOLVED IN ENERGY-TRANSFER OF MITOCHONDRIA FORM A HOMOLOGOUS PROTEIN FAMILY [J].
AQUILA, H ;
LINK, TA ;
KLINGENBERG, M .
FEBS LETTERS, 1987, 212 (01) :1-9
[2]   CYSTEINE RESIDUES ARE NOT ESSENTIAL FOR UNCOUPLING PROTEIN FUNCTION [J].
ARECHAGA, I ;
RAIMBAULT, S ;
PRIETO, S ;
LEVIMEYRUEIS, C ;
ZARAGOZA, P ;
MIROUX, B ;
RICQUIER, D ;
BOUILLAUD, F ;
RIAL, E .
BIOCHEMICAL JOURNAL, 1993, 296 :693-700
[3]  
BEAVIS AD, 1985, J BIOL CHEM, V260, P3424
[4]   RECENT PROGRESS ON REGULATION OF THE MITOCHONDRIAL PERMEABILITY TRANSITION PORE - A CYCLOSPORINE-SENSITIVE PORE IN THE INNER MITOCHONDRIAL-MEMBRANE [J].
BERNARDI, P ;
BROEKEMEIER, KM ;
PFEIFFER, DR .
JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 1994, 26 (05) :509-517
[5]  
BOUILLAUD F, 1992, MOL BIOL EVOL, V9, P970
[6]   A SEQUENCE RELATED TO A DNA RECOGNITION ELEMENT IS ESSENTIAL FOR THE INHIBITION BY NUCLEOTIDES OF PROTON TRANSPORT THROUGH THE MITOCHONDRIAL UNCOUPLING PROTEIN [J].
BOUILLAUD, F ;
ARECHAGA, I ;
PETIT, PX ;
RAIMBAULT, S ;
LEVIMEYRUEIS, C ;
CASTEILLA, L ;
LAURENT, M ;
RIAL, E ;
RICQUIER, D .
EMBO JOURNAL, 1994, 13 (08) :1990-1997
[7]   Mitochondrial ADP/ATP carrier can be reversibly converted into a large channel by Ca2+ [J].
Brustovetsky, N ;
Klingenberg, M .
BIOCHEMISTRY, 1996, 35 (26) :8483-8488
[8]   The mitochondrial oxoglutarate carrier: Sulfhydryl reagents bind to cysteine-184, and this interaction is enhanced by substrate binding [J].
Capobianco, L ;
Bisaccia, F ;
Mazzeo, M ;
Palmieri, F .
BIOCHEMISTRY, 1996, 35 (27) :8974-8980
[9]   PORE-LIKE AND CARRIER-LIKE PROPERTIES OF THE MITOCHONDRIAL ASPARTATE GLUTAMATE CARRIER AFTER MODIFICATION BY SH-REAGENTS - EVIDENCE FOR A PREFORMED CHANNEL AS A STRUCTURAL REQUIREMENT OF CARRIER-MEDIATED TRANSPORT [J].
DIERKS, T ;
SALENTIN, A ;
KRAMER, R .
BIOCHIMICA ET BIOPHYSICA ACTA, 1990, 1028 (03) :281-288
[10]   THE MITOCHONDRIAL ASPARTATE GLUTAMATE AND ADP/ATP CARRIER SWITCH FROM OBLIGATE COUNTEREXCHANGE TO UNIDIRECTIONAL TRANSPORT AFTER MODIFICATION BY SH-REAGENTS [J].
DIERKS, T ;
SALENTIN, A ;
HEBERGER, C ;
KRAMER, R .
BIOCHIMICA ET BIOPHYSICA ACTA, 1990, 1028 (03) :268-280