Coordinating Mitochondrial Biology Through the Stress-Responsive Regulation of Mitochondrial Proteases

被引:16
|
作者
Lebeau, Justine [1 ]
Rainbolt, T. Kelly [1 ]
Wiseman, R. Luke [1 ]
机构
[1] Scripps Res Inst, Dept Mol Med, La Jolla, CA 92037 USA
来源
MITOCHONDRIA AND LONGEVITY | 2018年 / 340卷
关键词
UNFOLDED PROTEIN RESPONSE; M-AAA PROTEASE; MATRIX PROCESSING PROTEASE; INDUCED GENE-EXPRESSION; CYTOCHROME-C RELEASE; E3 UBIQUITIN LIGASE; LON PROTEASE; TRANSCRIPTION FACTOR; SERINE-PROTEASE; RAT-LIVER;
D O I
10.1016/bs.ircmb.2018.05.003
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
Proteases are localized throughout mitochondria and function as critical regulators of all aspects of mitochondrial biology. As such, the activities of these proteases are sensitively regulated through transcriptional and post-translational mechanisms to adapt mitochondrial function to specific cellular demands. Here, we discuss the stress-responsive mechanisms responsible for regulating mitochondrial protease activity and the implications of this regulation on mitochondrial function. Furthermore, we describe how imbalances in the activity or regulation of mitochondrial proteases induced by genetic, environmental, or aging-related factors influence mitochondria in the context of disease. Understanding the molecular mechanisms by which cells regulate mitochondrial function through alterations in protease activity provide insights into the contributions of these proteases in pathologic mitochondrial dysfunction and reveals new therapeutic opportunities to ameliorate this dysfunction in the context of diverse classes of human disease.
引用
收藏
页码:79 / 128
页数:50
相关论文
共 50 条
  • [21] Stress responsive mitochondrial proteins in Arabidopsis thaliana
    Wang, Yan
    Berkowitz, Oliver
    Selinski, Jennifer
    Xu, Yue
    Hartmann, Andreas
    Whelan, James
    FREE RADICAL BIOLOGY AND MEDICINE, 2018, 122 : 28 - 39
  • [22] MITOCHONDRIAL AND REDOX REGULATION OF STEM CELL BIOLOGY
    Finkel, Toren
    FREE RADICAL BIOLOGY AND MEDICINE, 2010, 49 : S5 - S5
  • [23] Mutations in the Hyperosmotic Stress-Responsive Mitochondrial BASIC AMINO ACID CARRIER2 Enhance Proline Accumulation in Arabidopsis
    Toka, Iman
    Planchais, Severine
    Cabassa, Cecile
    Justin, Anne-Marie
    De Vos, Delphine
    Richard, Luc
    Savoure, Arnould
    Carol, Pierre
    PLANT PHYSIOLOGY, 2010, 152 (04) : 1851 - 1862
  • [24] Plant biology: Unlocking mitochondrial stress signals
    Porcher, Alexis
    Kangasja, Saijaliisa
    CURRENT BIOLOGY, 2024, 34 (02)
  • [25] AtWRKY40 and AtWRKY63 Modulate the Expression of Stress-Responsive Nuclear Genes Encoding Mitochondrial and Chloroplast Proteins
    Van Aken, Olivier
    Zhang, Botao
    Law, Simon
    Narsai, Reena
    Whelan, James
    PLANT PHYSIOLOGY, 2013, 162 (01) : 254 - 271
  • [26] DJ-1 regulation of mitochondrial function and autophagy through oxidative stress
    McCoy, Melissa K.
    Cookson, Mark R.
    AUTOPHAGY, 2011, 7 (05) : 531 - 532
  • [27] Fenretinide targeting of human colon cancer sphere cells through cell cycle regulation and stress-responsive activities
    Liu, Lanlan
    Liu, Jiansheng
    Wang, Haiwei
    Zhao, Hui
    Du, Yanzhi
    ONCOLOGY LETTERS, 2018, 16 (04) : 5339 - 5348
  • [28] Mitochondrial biology and oxidative stress in Parkinson disease pathogenesis
    Claire Henchcliffe
    M Flint Beal
    Nature Clinical Practice Neurology, 2008, 4 : 600 - 609
  • [29] Mitochondrial biology and oxidative stress in Parkinson disease pathogenesis
    Henchcliffe, Claire
    Beal, M. Flint
    NATURE CLINICAL PRACTICE NEUROLOGY, 2008, 4 (11): : 600 - 609
  • [30] Endoplasmic reticulum stress-responsive microRNAs are involved in the regulation of abiotic stresses in wheat
    Chen, Yong
    Yu, Xing
    PLANT CELL REPORTS, 2023, 42 (09) : 1433 - 1452