Influence of mitochondrial DNA level on cellular energy metabolism: implications for mitochondrial diseases

被引:0
|
作者
Christophe Rocher
Jan-Willem Taanman
Denis Pierron
Benjamin Faustin
Giovani Benard
Rodrigue Rossignol
Monique Malgat
Laurence Pedespan
Thierry Letellier
机构
[1] U688 INSERM-Université Victor Segalen Bordeaux2,University Department of Clinical Neurosciences
[2] Institute of Neurology,undefined
[3] University College London,undefined
[4] Hôpital Pellegrin enfants,undefined
关键词
Mitochondrial DNA depletion syndrome; Oxidative phosphorylation; Respiratory chain; Threshold effect;
D O I
暂无
中图分类号
学科分类号
摘要
The total amount of cellular mitochondrial DNA (mtDNA) varies widely and seems to be related to the nature and metabolic state of tissues and cells in culture. It is not known, however, whether this variation has any significance in vivo, and to which extent it regulates energy production. To better understand the importance of the cellular mtDNA level, we studied the influence of a gradual reduction of mtDNA copy number on oxidative phosphorylation in two models: (a) a control human cell line treated with different concentrations of 2′, 3′-dideoxycytidine, a nucleoside analogue that inhibits mtDNA replication by interfering with mitochondrial DNA polymerase γ, and (b) a cell line derived from a patient presenting mtDNA depletion. The two models were used to construct biochemical and phenotypic threshold curves. Our results show that oxidative phosphorylation activities are under a tight control by the amount of mtDNA in the cell, and that the full complement of mtDNA molecules are necessary to maintain a normal energy production level.
引用
收藏
相关论文
共 50 条
  • [41] Mitochondrial iron metabolism and neurodegenerative diseases
    Cheng, Ruiying
    Dhorajia, Varun V.
    Kim, Jonghan
    Kim, Yuho
    NEUROTOXICOLOGY, 2022, 88 : 88 - 101
  • [42] Mitochondrial DNA-related mitochondrial dysfunction in neurodegenerative diseases
    Swerdlow, RH
    ARCHIVES OF PATHOLOGY & LABORATORY MEDICINE, 2002, 126 (03) : 271 - 280
  • [43] Retinal manifestations in mitochondrial diseases associated with mitochondrial DNA mutation
    Isashiki, Y
    Nakagawa, M
    Ohba, N
    Kamimura, K
    Sakoda, Y
    Higuchi, I
    Izumo, S
    Osame, M
    ACTA OPHTHALMOLOGICA SCANDINAVICA, 1998, 76 (01): : 6 - 13
  • [44] Mitochondrial Metabolism in Major Neurological Diseases
    Zhou, Zhengqiu
    Austin, Grant L.
    Young, Lyndsay E. A.
    Johnson, Lance A.
    Sun, Ramon
    CELLS, 2018, 7 (12)
  • [45] Mitochondrial energy metabolism and ageing
    Bratic, Ivana
    Trifunovic, Aleksandra
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2010, 1797 (6-7): : 961 - 967
  • [46] Mitochondrial degradation and energy metabolism
    Melser, Su
    Lavie, Julie
    Benard, Giovanni
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2015, 1853 (10): : 2812 - 2821
  • [47] Mitochondrial functional complementation in mitochondrial DNA-based diseases
    Nakada, Kazuto
    Sato, Akitsugu
    Hayashi, Jun-Ichi
    INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 2009, 41 (10): : 1907 - 1913
  • [48] Mitochondrial DNA Replacement Techniques to Prevent Human Mitochondrial Diseases
    Sendra, Luis
    Garcia-Mares, Alfredo
    Herrero, Maria Jose
    Alino, Salvador F.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (02) : 1 - 23
  • [49] Mitochondrial DNA mutagenesis in mitochondrial diseases due to defects in DNA Polymerase Gamma
    Copeland, W. C.
    ENVIRONMENTAL AND MOLECULAR MUTAGENESIS, 2008, 49 (07) : 521 - 521
  • [50] The interplay between hippo signaling and mitochondrial metabolism: Implications for cellular homeostasis and disease
    Biswal, Priyanka
    Sahu, Manas Ranjan
    Ahmad, Mir Hilal
    Mondal, Amal Chandra
    MITOCHONDRION, 2024, 76