Loss of COX4I1 Leads to Combined Respiratory Chain Deficiency and Impaired Mitochondrial Protein Synthesis

被引:33
作者
Cunatova, Kristyna [1 ,2 ]
Reguera, David Pajuelo [1 ]
Vrbacky, Marek [1 ]
Fernandez-Vizarra, Erika [3 ]
Ding, Shujing [3 ]
Fearnley, Ian M. [3 ]
Zeviani, Massimo [3 ]
Houstek, Josef [1 ]
Mracek, Tomas [1 ]
Pecina, Petr [1 ]
机构
[1] Czech Acad Sci, Inst Physiol, Lab Bioenerget, Prague 14200, Czech Republic
[2] Charles Univ Prague, Dept Cell Biol, Fac Sci, Prague 12800, Czech Republic
[3] Univ Cambridge, MRC Mitochondrial Biol Unit, Cambridge CB2 0XY, England
关键词
mitochondria; OXPHOS; cI; COX; cIV; COX4; knock-out; cIV assembly; complex I; biogenesis interdependency; complexome profiling; mitochondrial protein synthesis; CYTOCHROME-C-OXIDASE; COMPLEX I DEFICIENCY; SUBUNIT; MUTATION; ARCHITECTURE; BIOGENESIS; STABILITY; MODULE; HIGD2A;
D O I
10.3390/cells10020369
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The oxidative phosphorylation (OXPHOS) system localized in the inner mitochondrial membrane secures production of the majority of ATP in mammalian organisms. Individual OXPHOS complexes form supramolecular assemblies termed supercomplexes. The complexes are linked not only by their function but also by interdependency of individual complex biogenesis or maintenance. For instance, cytochrome c oxidase (cIV) or cytochrome bc1 complex (cIII) deficiencies affect the level of fully assembled NADH dehydrogenase (cI) in monomeric as well as supercomplex forms. It was hypothesized that cI is affected at the level of enzyme assembly as well as at the level of cI stability and maintenance. However, the true nature of interdependency between cI and cIV is not fully understood yet. We used a HEK293 cellular model where the COX4 subunit was completely knocked out, serving as an ideal system to study interdependency of cI and cIV, as early phases of cIV assembly process were disrupted. Total absence of cIV was accompanied by profound deficiency of cI, documented by decrease in the levels of cI subunits and significantly reduced amount of assembled cI. Supercomplexes assembled from cI, cIII, and cIV were missing in COX4I1 knock-out (KO) due to loss of cIV and decrease in cI amount. Pulse-chase metabolic labeling of mitochondrial DNA (mtDNA)-encoded proteins uncovered a decrease in the translation of cIV and cI subunits. Moreover, partial impairment of mitochondrial protein synthesis correlated with decreased content of mitochondrial ribosomal proteins. In addition, complexome profiling revealed accumulation of cI assembly intermediates, indicating that cI biogenesis, rather than stability, was affected. We propose that attenuation of mitochondrial protein synthesis caused by cIV deficiency represents one of the mechanisms, which may impair biogenesis of cI.
引用
收藏
页码:1 / 19
页数:18
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共 60 条
  • [11] Ground control to major TOM: mitochondria-nucleus communication
    Eisenberg-Bord, Michal
    Schuldiner, Maya
    [J]. FEBS JOURNAL, 2017, 284 (02) : 196 - 210
  • [12] Combined Respiratory Chain Deficiency and UQCC2 Mutations in Neonatal Encephalomyopathy: Defective Supercomplex Assembly in Complex III Deficiencies
    Feichtinger, Rene G.
    Brunner-Krainz, Michaela
    Alhaddad, Bader
    Wortmann, Saskia B.
    Kovacs-Nagy, Reka
    Stojakovic, Tatjana
    Erwa, Wolfgang
    Resch, Bernhard
    Windischhofer, Werner
    Verheyen, Sarah
    Uhrig, Sabine
    Windpassinger, Christian
    Locker, Felix
    Makowski, Christine
    Strom, Tim M.
    Meitinger, Thomas
    Prokisch, Holger
    Sperl, Wolfgang
    Haack, Tobias B.
    Mayr, Johannes A.
    [J]. OXIDATIVE MEDICINE AND CELLULAR LONGEVITY, 2017, 2017
  • [13] Isolation of mitochondria for biogenetical studies: An update
    Fernandez-Vizarra, Erika
    Ferrin, Gustavo
    Perez-Martos, Acisclo
    Fernandez-Silva, Patricio
    Zeviani, Massimo
    Antonio Enriquez, Jose
    [J]. MITOCHONDRION, 2010, 10 (03) : 253 - 262
  • [14] Assembly of mitochondrial cytochrome c-oxidase, a complicated and highly regulated cellular process
    Fontanesi, Flavia
    Soto, Ileana C.
    Horn, Darryl
    Barrientos, Antoni
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2006, 291 (06): : C1129 - C1147
  • [15] Novel insights into the assembly and function of human nuclear-encoded cytochrome c oxidase subunits 4, 5a, 6a, 7a and 7b
    Fornuskova, Daniela
    Stiburek, Lukas
    Wenchich, Laszlo
    Vinsova, Kamila
    Hansikova, Hana
    Zeman, Jiri
    [J]. BIOCHEMICAL JOURNAL, 2010, 428 : 363 - 374
  • [16] HIF-1 regulates cytochrome oxidase subunits to optimize efficiency of respiration in hypoxic cells
    Fukuda, Ryo
    Zhang, Huafeng
    Kim, Jung-whan
    Shimoda, Larissa
    Dang, Chi V.
    Semenza, Gregg L.
    [J]. CELL, 2007, 129 (01) : 111 - 122
  • [17] The architecture of the mammalian respirasome
    Gu, Jinke
    Wu, Meng
    Guo, Runyu
    Yan, Kaige
    Lei, Jianlin
    Gao, Ning
    Yang, Maojun
    [J]. NATURE, 2016, 537 (7622) : 639 - +
  • [18] The Assembly Pathway of Mitochondrial Respiratory Chain Complex I
    Guerrero-Castillo, Sergio
    Baertling, Fabian
    Kownatzki, Daniel
    Wessels, Hans J.
    Arnold, Susanne
    Brandt, Ulrich
    Nijtmans, Leo
    [J]. CELL METABOLISM, 2017, 25 (01) : 128 - 139
  • [19] Making Proteins in the Powerhouse
    Hallberg, B. Martin
    Larsson, Nils-Goran
    [J]. CELL METABOLISM, 2014, 20 (02) : 226 - 240
  • [20] Acadian variant of Fanconi syndrome is caused by mitochondrial respiratory chain complex I deficiency due to a non-coding mutation in complex I assembly factor NDUFAF6
    Hartmannova, Hana
    Piherova, Lenka
    Tauchmannova, Kate Rina
    Kidd, Kendrah
    Acott, Philip D.
    Crocker, John F. S.
    Oussedik, Youcef
    Mallet, Marcel
    Hodanova, Katerina
    Stranecky, Viktor
    Pristoupilova, Anna
    Baresova, Veronika
    Jedlickova, Ivana
    Zivna, Martina
    Sovova, Jana
    Hulkova, Helena
    Robins, Vicki
    Vrbacky, Marek
    Pecina, Petr
    Kaplanova, Vilma
    Houstek, Josef
    Mracek, Tomas
    Thibeault, Yves
    Bleyer, Anthony J.
    Kmoch, Stanislav
    [J]. HUMAN MOLECULAR GENETICS, 2016, 25 (18) : 4062 - 4079