MODES OF COENZYME-Q FUNCTION IN ELECTRON-TRANSFER

被引:11
作者
LENAZ, G
BOVINA, C
CASTELLUCCIO, C
CAVAZZONI, M
ESTORNELL, E
FATO, R
HUERTAS, JR
PICH, MM
PALLOTTI, F
CASTELLI, GP
RAUCHOVA, H
机构
[1] Dipartimento di Biochimica 'Giovanni Moruzzi', Università di Bologna, Bologna, I-40126
关键词
COENZYME Q; NADH COQ REDUCTASE; UBIQUINOL CYTOCHROME C REDUCTASE; SUCCINATE CYTOCHROME C REDUCTASE; RESPIRATORY CHAIN; MITOCHONDRIA;
D O I
10.1007/BF01276901
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In the mitochondrial respiratory chain, coenzyme Q acts in different ways. A diffusable coenzyme Q pool as a common substrate-like intermediate links the low-potential complexes with complex III. Its diffusion in the lipids is not rate-limiting for electron transfer, but its content is not saturating for maximal rate of NADH oxidation. Protein-bound coenzyme Q is involved in energy conservation, and may be part of enzyme supercomplexes, as in succinate cytochrome c reductase. The reason for lack of kinetic saturation of the respiratory chain by quinone concentration is in the low extent of solubility of monomeric coenzyme Q in the membrane lipids. Assays of respiratory enzymes are performed using water soluble coenzyme Q homologs and analogs; several problems exist in using oxidized quinones as accepters of coenzyme Q reductases. In particular, for complex I no acceptor appears to favorably substitute the endogenous quinone. In addition, quinone reduction sites in complex III compete with the sites in the dehydrogenases, particularly when using duroquinone. The different extent by which these sites operate when different donor substrates (NADH, succinate, glycerol-3-phosphate) are used is best explained by different exposure of the quinone acceptor sites in the dehydrogenases.
引用
收藏
页码:50 / 62
页数:13
相关论文
共 82 条
[21]  
CURATOLA G, 1991, DRUG ANESTHETIC EFFE, P35
[22]   UBIQUINONE, DOLICHOL, AND CHOLESTEROL-METABOLISM IN AGING AND ALZHEIMERS-DISEASE [J].
EDLUND, C ;
SODERBERG, M ;
KRISTENSSON, K ;
DALLNER, G .
BIOCHEMISTRY AND CELL BIOLOGY-BIOCHIMIE ET BIOLOGIE CELLULAIRE, 1992, 70 (06) :422-428
[23]   A MILLING CROWD MODEL FOR LOCAL AND LONG-RANGE OBSTRUCTED LATERAL DIFFUSION - MOBILITY OF EXCIMERIC PROBES IN THE MEMBRANE OF INTACT ERYTHROCYTES [J].
EISINGER, J ;
FLORES, J ;
PETERSEN, WP .
BIOPHYSICAL JOURNAL, 1986, 49 (05) :987-1001
[24]   INCORPORATION OF UBIQUINONE HOMOLOGS INTO LIPID VESICLES AND MITOCHONDRIAL-MEMBRANES [J].
ESPOSTI, MD ;
BERTOLI, E ;
PARENTICASTELLI, G ;
FATO, R ;
MASCARELLO, S ;
LENAZ, G .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1981, 210 (01) :21-32
[25]   NATURAL SUBSTANCES (ACETOGENINS) FROM THE FAMILY ANNONACEAE ARE POWERFUL INHIBITORS OF MITOCHONDRIAL NADH DEHYDROGENASE (COMPLEX-I) [J].
ESPOSTI, MD ;
GHELLI, A ;
RATTA, M ;
CORTES, D ;
ESTORNELL, E .
BIOCHEMICAL JOURNAL, 1994, 301 :161-167
[26]   COMPLEX-I AND COMPLEX-III OF MITOCHONDRIA HAVE COMMON INHIBITORS ACTING AS UBIQUINONE ANTAGONISTS [J].
ESPOSTI, MD ;
GHELLI, A ;
CRIMI, M ;
ESTORNELL, E ;
FATO, R ;
LENAZ, G .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1993, 190 (03) :1090-1096
[27]   ASSAY CONDITIONS FOR THE MITOCHONDRIAL NADH - COENZYME-Q OXIDOREDUCTASE [J].
ESTORNELL, E ;
FATO, R ;
PALLOTTI, F ;
LENAZ, G .
FEBS LETTERS, 1993, 332 (1-2) :127-131
[28]   SATURATION KINETICS OF COENZYME-Q IN NADH AND SUCCINATE OXIDATION IN BEEF-HEART MITOCHONDRIA [J].
ESTORNELL, E ;
FATO, R ;
CASTELLUCCIO, C ;
CAVAZZONI, M ;
CASTELLI, GP ;
LENAZ, G .
FEBS LETTERS, 1992, 311 (02) :107-109
[29]   STEADY-STATE KINETICS OF UBIQUINOL CYTOCHROME-C REDUCTASE IN BOVINE HEART SUBMITOCHONDRIAL PARTICLES - DIFFUSIONAL EFFECTS [J].
FATO, R ;
CAVAZZONI, M ;
CASTELLUCCIO, C ;
CASTELLI, GP ;
PALMER, G ;
ESPOSTI, MD ;
LENAZ, G .
BIOCHEMICAL JOURNAL, 1993, 290 :225-236
[30]   DETERMINATION OF PARTITION AND LATERAL DIFFUSION-COEFFICIENTS OF UBIQUINONES BY FLUORESCENCE QUENCHING OF NORMAL-(9-ANTHROYLOXY)STEARIC ACIDS IN PHOSPHOLIPID-VESICLES AND MITOCHONDRIAL-MEMBRANES [J].
FATO, R ;
BATTINO, M ;
ESPOSTI, MD ;
CASTELLI, GP ;
LENAZ, G .
BIOCHEMISTRY, 1986, 25 (11) :3378-3390