Cellular mechanisms of complex I-associated pathology

被引:37
作者
Abramov, Andrey Y. [1 ]
Angelova, Plamena R. [1 ,2 ]
机构
[1] UCL, Dept Clin & Movement Neurosci, Inst Neurol, Queen Sq, London WC1N 3BG, England
[2] Sechenov First Moscow State Med Univ, Dept Pathophysiol, Moscow 119048, Russia
关键词
MITOCHONDRIAL CA2+; SEIZURE ACTIVITY; DEFICIENCY; DYSFUNCTION; MUTATIONS; FIBROBLASTS; SUBUNIT; GENE; TOXICITY; DELETION;
D O I
10.1042/BST20191042
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
Mitochondria control vitally important functions in cells, including energy production, cell signalling and regulation of cell death. Considering this, any alteration in mitochondrial metabolism would lead to cellular dysfunction and the development of a disease. A large proportion of disorders associated with mitochondria are induced by mutations or chemical inhibition of the mitochondrial complex I - the entry point to the electron transport chain. Subunits of the enzyme NADH: ubiquinone oxidoreductase, are encoded by both nuclear and mitochondrial DNA and mutations in these genes lead to cardio and muscular pathologies and diseases of the central nervous system. Despite such a clear involvement of complex I deficiency in numerous disorders, the molecular and cellular mechanisms leading to the development of pathology are not very clear. In this review, we summarise how lack of activity of complex I could differentially change mitochondrial and cellular functions and how these changes could lead to a pathology, following discrete routes.
引用
收藏
页码:1963 / 1969
页数:7
相关论文
共 63 条
  • [51] Rotenone model of Parkinson disease - Multiple brain mitochondria dysfunctions after short term systemic rotenone intoxication
    Panov, A
    Dikalov, S
    Shalbuyeva, N
    Taylor, G
    Sherer, T
    Greenamyre, T
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (51) : 42026 - 42035
  • [52] Respiratory Complex I Dysfunction Due to Mitochondrial DNA Mutations Shifts the Voltage Threshold for Opening of the Permeability Transition Pore toward Resting Levels
    Porcelli, Anna Maria
    Angelin, Alessia
    Ghelli, Anna
    Mariani, Elisa
    Martinuzzi, Andrea
    Carelli, Valerio
    Petronilli, Valeria
    Bernardi, Paolo
    Rugolo, Michela
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (04) : 2045 - 2052
  • [53] Complex I dysfunction underlies the glycolytic switch in pulmonary hypertensive smooth muscle cells
    Rafikov, Ruslan
    Sun, Xutong
    Rafikova, Olga
    Meadows, Mary Louise
    Desai, Ankit A.
    Khalpey, Zain
    Yuan, Jason X. -J.
    Fineman, Jeffrey R.
    Black, Stephen M.
    [J]. REDOX BIOLOGY, 2015, 6 : 278 - 286
  • [54] Aggregated α-synuclein and complex I deficiency: exploration of their relationship in differentiated neurons
    Reeve, A. K.
    Ludtmann, M. H. R.
    Angelova, P. R.
    Simcox, E. M.
    Horrocks, M. H.
    Klenerman, D.
    Gandhi, S.
    Turnbull, D. M.
    Abramov, A. Y.
    [J]. CELL DEATH & DISEASE, 2015, 6 : e1820 - e1820
  • [55] A giant molecular proton pump: structure and mechanism of respiratory complex I
    Sazanov, Leonid A.
    [J]. NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2015, 16 (06) : 375 - 388
  • [56] MITOCHONDRIAL COMPLEX I DEFICIENCY IN PARKINSONS-DISEASE
    SCHAPIRA, AHV
    COOPER, JM
    DEXTER, D
    JENNER, P
    CLARK, JB
    MARSDEN, CD
    [J]. LANCET, 1989, 1 (8649) : 1269 - 1269
  • [57] Mutant NDUFV1subunit of mitochondrial complex I causes leukodystrophy and myoclonic epilepsy
    Schuelke, M
    Smeitink, J
    Mariman, E
    Loeffen, J
    Plecko, B
    Trijbels, F
    Stöckler-Ipsiroglu, S
    van den Heuvel, L
    [J]. NATURE GENETICS, 1999, 21 (03) : 260 - 261
  • [58] Mechanism of toxicity of pesticides acting at complex I: relevance to environmental etiologies of Parkinson's disease
    Sherer, Todd B.
    Richardson, Jason R.
    Testa, Claudia M.
    Seo, Byoung Boo
    Panov, Alexander V.
    Yagi, Takao
    Matsuno-Yagi, Akemi
    Miller, Gary W.
    Greenamyre, J. Timothy
    [J]. JOURNAL OF NEUROCHEMISTRY, 2007, 100 (06) : 1469 - 1479
  • [59] Reverse electron transfer results in a loss of flavin from mitochondrial complex I: Potential mechanism for brain ischemia reperfusion injury
    Stepanova, Anna
    Kahl, Anja
    Konrad, Csaba
    Ten, Vadim
    Starkov, Anatoly S.
    Galkin, Alexander
    [J]. JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2017, 37 (12) : 3649 - 3658
  • [60] Catalytic properties of the mitochondrial NADH-ubiquinone oxidoreductase (Complex I) and the pseudo-reversible active/inactive enzyme transition
    Vinogradov, AD
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 1998, 1364 (02): : 169 - 185