mtUPR Modulation as a Therapeutic Target for Primary and Secondary Mitochondrial Diseases

被引:22
作者
Cilleros-Holgado, Paula [1 ]
Gomez-Fernandez, David [1 ]
Pinero-Perez, Rocio [1 ]
Reche-Lopez, Diana [1 ]
Alvarez-Cordoba, Monica [1 ]
Munuera-Cabeza, Manuel [1 ]
Talaveron-Rey, Marta [1 ]
Povea-Cabello, Suleva [1 ]
Suarez-Carrillo, Alejandra [1 ]
Romero-Gonzalez, Ana [1 ]
Suarez-Rivero, Juan Miguel [1 ]
Romero-Dominguez, Jose Manuel [1 ]
Sanchez-Alcazar, Jose Antonio [1 ]
机构
[1] Univ Pablo de Olavide, CSIC, CABD, Seville 41013, Spain
关键词
mitochondria; proteostasis; mitochondrial unfolded protein response; mitochondrial biogenesis; therapeutic target; neurodegenerative diseases; mitochondrial diseases; ageing; metabolic diseases; cardiovascular diseases; cancer; UNFOLDED PROTEIN RESPONSE; TRANSCRIPTION FACTOR ATF5; QUALITY-CONTROL MECHANISMS; OXIDATIVE STRESS; DNA MUTATIONS; ESTROGEN-RECEPTOR; LON PROTEASE; CANCER; DYSFUNCTION; METABOLISM;
D O I
10.3390/ijms24021482
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
Mitochondrial dysfunction is a key pathological event in many diseases. Its role in energy production, calcium homeostasis, apoptosis regulation, and reactive oxygen species (ROS) balance render mitochondria essential for cell survival and fitness. However, there are no effective treatments for most primary and secondary mitochondrial diseases to this day. Therefore, new therapeutic approaches, such as the modulation of the mitochondrial unfolded protein response (mtUPR), are being explored. mtUPRs englobe several compensatory processes related to proteostasis and antioxidant system mechanisms. mtUPR activation, through an overcompensation for mild intracellular stress, promotes cell homeostasis and improves lifespan and disease alterations in biological models of mitochondrial dysfunction in age-related diseases, cardiopathies, metabolic disorders, and primary mitochondrial diseases. Although mtUPR activation is a promising therapeutic option for many pathological conditions, its activation could promote tumor progression in cancer patients, and its overactivation could lead to non-desired side effects, such as the increased heteroplasmy of mitochondrial DNA mutations. In this review, we present the most recent data about mtUPR modulation as a therapeutic approach, its role in diseases, and its potential negative consequences in specific pathological situations.
引用
收藏
页数:25
相关论文
共 202 条
[1]   Alterations of Mitochondria and Related Metabolic Pathways in Leukemia: A Narrative Review [J].
Al Ageeli, Essam .
SAUDI JOURNAL OF MEDICINE & MEDICAL SCIENCES, 2020, 8 (01) :3-11
[2]   Discovery of Genes Activated by the Mitochondrial Unfolded Protein Response (mtUPR) and Cognate Promoter Elements [J].
Aldridge, Jonathan E. ;
Horibe, Tomohisa ;
Hoogenraad, Nicholas J. .
PLOS ONE, 2007, 2 (09)
[3]   Folding the Mitochondrial UPR into the Integrated Stress Response [J].
Anderson, Nadine S. ;
Haynes, Cole M. .
TRENDS IN CELL BIOLOGY, 2020, 30 (06) :428-439
[4]   Oxidative stress markers, C-reactive protein and heat shock protein 70 levels in subjects with metabolic syndrome [J].
Armutcu, Ferah ;
Ataymen, Meryem ;
Atmaca, Hulusi ;
Gurel, Ahmet .
CLINICAL CHEMISTRY AND LABORATORY MEDICINE, 2008, 46 (06) :785-790
[5]   Mitochondrial dysfunction in cardiovascular disease [J].
Ballinger, SW .
FREE RADICAL BIOLOGY AND MEDICINE, 2005, 38 (10) :1278-1295
[6]   Mitochondrial chaperone TRAP1 activates the mitochondrial UPR and extends healthspan in Drosophila [J].
Baqri, Rehan M. ;
Pietron, Arielle V. ;
Gokhale, Rewatee H. ;
Turner, Brittany A. ;
Kaguni, Laurie S. ;
Shingleton, Alexander W. ;
Kunes, Sam ;
Miller, Kyle E. .
MECHANISMS OF AGEING AND DEVELOPMENT, 2014, 141 :35-45
[7]   Synthesis, delivery and regulation of eukaryotic heme and Fe-S cluster cofactors [J].
Barupala, Dulmini P. ;
Dzul, Stephen P. ;
Riggs-Gelasco, Pamela Jo ;
Stemmler, Timothy L. .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2016, 592 :60-75
[8]   Neuroendocrine Coordination of Mitochondrial Stress Signaling and Proteostasis [J].
Berendzen, Kristen M. ;
Durieux, Jenni ;
Shao, Li-Wa ;
Tian, Ye ;
Kim, Hyun-eui ;
Wolff, Suzanne ;
Liu, Ying ;
Dillin, Andrew .
CELL, 2016, 166 (06) :1553-+
[9]   The mitochondrial ATP-dependent Lon protease: a novel target in lymphoma death mediated by the synthetic triterpenoid CDDO and its derivatives [J].
Bernstein, Steven H. ;
Venkatesh, Sundararajan ;
Li, Min ;
Lee, Jae ;
Lu, Bin ;
Hilchey, Shannon P. ;
Morse, Kimberly M. ;
Metcalfe, Hollie M. ;
Skalska, Jolanta ;
Andreeff, Michael ;
Brookes, Paul S. ;
Suzuki, Carolyn K. .
BLOOD, 2012, 119 (14) :3321-3329
[10]   Mitochondrial dysfunction and oxidative stress in metabolic disorders - A step towards mitochondria based therapeutic strategies [J].
Bhatti, Jasvinder Singh ;
Bhatti, Gurjit Kaur ;
Reddy, P. Hemachandra .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2017, 1863 (05) :1066-1077