Iron-sulfur clusters semiquinones in Complex I

被引:359
作者
Ohnishi, T [1 ]
机构
[1] Johnson Res Fdn, Dept Biochem & Biophys, Philadelphia, PA 19104 USA
[2] Univ Penn, Philadelphia, PA 19104 USA
来源
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS | 1998年 / 1364卷 / 02期
关键词
NADH-quinone oxidoreductase (Complex I); electron transfer; iron-sulfur cluster; quinone; semiquinone; mitochondrial and bacterial respiration; electron paramagnetic resonance;
D O I
10.1016/S0005-2728(98)00027-9
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
NADH-quinone(1) oxidoreductase (Complex I) isolated from bovine heart mitochondria was, until recently, the major source for the study of this most complicated energy transducing device in the mitochondrial respiratory chain. Complex I has been shown to contain 43 subunits and possesses a molecular mass of about 1 million. Recently, Complex I genes have been cloned and sequenced from several bacterial sources including Escherichia coli, Paracoccus denitrificans, Rhodobacter rer capsulatus and Thermus thermophilus HB-8. These enzymes are less complicated than the bovine enzyme, containing a core of 13 or 14 subunits homologous to the bovine heart Complex I. From this data, important clues concerning the subunit location of both the substrate binding site and intrinsic redox centers have been gleaned. Powerful molecular genetic approaches used in these bacterial systems can identify structure/function relationships concerning the redox components of Complex I. Site-directed mutants at the level of bacterial chromosomes and over-expression and purification of single subunits have allowed detailed analysis of the amino acid residues involved in ligand binding to several iron-sulfur clusters. Therefore, it has become possible to examine which subunits contain individual iron-sulfur clusters, their location within the enzyme and what their ligand residues are. The discovery of g = 2.00 EPR signals arising from two distinct species of semiquinone (SQ) in the activated bovine heart submitochondrial particles (SMP) is another line of recent progress. The intensity of semiquinone signals is sensitive to Delta mu(H)(+) and is diminished by specific inhibitors of Complex I. To date, semiquinones similar to those reported for the bovine heart mitochondrial Complex I have not yet been discovered in the bacterial systems. This mini-review describes three aspects of the recent progress in the study of the redox components of Complex I: (A) the location of the substrate (NADH) binding site, flavin, and most of the iron-sulfur clusters, which have been identified in the hydrophilic electron entry domain of Complex I; (B) experimental evidence indicating that the cluster N2 is located in the amphipathic domain of Complex I, connecting the promontory and membrane parts. Very recent data is also presented suggesting that the cluster N2 may have a unique ligand structure with an atypical cluster-ligation sequence motif located in the NuoB (NQO6/PSST) subunit rather than in the long advocated NuoI (NQO9/TYKY) subunit. The latter subunit contains the most primordial sequence motif for two tetranuclear clusters; (C) the discovery of spin-spin interactions between cluster N2 and two distinct Complex I-associated species of semiquinone. Based on the splitting of the g signal of the cluster N2 and concomitant strong enhancement of the semiquinone spin relaxation, one semiquinone species was localized 8-11 Angstrom from the cluster N2 within the inner membrane on the matrix side (N-side). Spin relaxation of the other semiquinone species is much less enhanced, and thus it was proposed to have a longer distance from the cluster N2, perhaps located closer to the other side (P-side) surface of the membrane. A brief introduction of EPR technique was also described in Appendix A of this mini-review. (C) 1998 Elsevier Science B.V.
引用
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页码:186 / 206
页数:21
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共 108 条
  • [1] ADMAN ET, 1976, J BIOL CHEM, V251, P3801
  • [2] Influence of oxygen ligation on [Fe4S4] cluster properties. Characterization of the Cys77Ser mutant of Chromatium vinosum HiPIP
    Agarwal, A
    Li, DW
    Cowan, JA
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1996, 118 (04) : 927 - 928
  • [3] ALBRACHT PJA, 1997, BIOCHIM BIOPHYS ACTA, V1318, P92
  • [4] EPR SIGNALS OF NADH - Q-OXIDOREDUCTASE SHAPE AND INTENSITY
    ALBRACHT, SPJ
    DOOIJEWAARD, G
    LEEUWERIK, FJ
    VANSWOL, B
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA, 1977, 459 (02) : 300 - 317
  • [5] STUDIES ON SUCCINIC AND DPNH DEHYDROGENASE PREPARATIONS BY PARAMAGNETIC RESONANCE (EPR) SPECTROSCOPY
    BEINERT, H
    SANDS, RH
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1960, 3 (01) : 41 - 46
  • [6] NEW INSIGHTS, IDEAS AND UNANSWERED QUESTIONS CONCERNING IRON-SULFUR CLUSTERS IN MITOCHONDRIA
    BEINERT, H
    ALBRACHT, SPJ
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA, 1982, 683 (3-4) : 245 - 277
  • [7] CATALYTIC SECTOR OF COMPLEX-I (NADH-UBIQUINONE OXIDOREDUCTASE) - SUBUNIT STOICHIOMETRY AND SUBSTRATE-INDUCED CONFORMATION CHANGES
    BELOGRUDOV, G
    HATEFI, Y
    [J]. BIOCHEMISTRY, 1994, 33 (15) : 4571 - 4576
  • [8] H-1-NMR STUDIES ON PARTIALLY AND FULLY REDUCED 2(4FE-4S) FERREDOXIN FROM CLOSTRIDIUM-PASTEURIANUM
    BERTINI, I
    BRIGANTI, F
    LUCHINAT, C
    MESSORI, L
    MONNANNI, R
    SCOZZAFAVA, A
    VALLINI, G
    [J]. EUROPEAN JOURNAL OF BIOCHEMISTRY, 1992, 204 (02): : 831 - 839
  • [9] The complete genome sequence of Escherichia coli K-12
    Blattner, FR
    Plunkett, G
    Bloch, CA
    Perna, NT
    Burland, V
    Riley, M
    ColladoVides, J
    Glasner, JD
    Rode, CK
    Mayhew, GF
    Gregor, J
    Davis, NW
    Kirkpatrick, HA
    Goeden, MA
    Rose, DJ
    Mau, B
    Shao, Y
    [J]. SCIENCE, 1997, 277 (5331) : 1453 - +
  • [10] SPIN-LATTICE RELAXATION RATES OF IRON-SULFUR PROTEINS AND HEME-PROTEINS AFFECTED BY DYSPROSIUM COMPLEXES AND TEMPERATURE
    BLUM, H
    BOWYER, JR
    CUSANOVICH, MA
    WARING, AJ
    OHNISHI, T
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA, 1983, 748 (03) : 418 - 428