Amyotrophic Lateral Sclerosis (ALS): Stressed by Dysfunctional Mitochondria-Endoplasmic Reticulum Contacts (MERCs)

被引:36
作者
Chen, Junsheng [1 ]
Bassot, Arthur [1 ]
Giuliani, Fabrizio [2 ]
Simmen, Thomas [1 ]
机构
[1] Univ Alberta, Fac Med & Dent, Dept Cell Biol, Edmonton, AB T6G 2H7, Canada
[2] Univ Alberta, Fac Med & Dent, Dept Med Neurol, Edmonton, AB T6G 2H7, Canada
关键词
mitochondria-associated membranes (MAMs); amyotrophic lateral sclerosis (ALS); mitochondria-endoplasmic reticulum contacts (MERCs); FRONTOTEMPORAL LOBAR DEGENERATION; UNFOLDED PROTEIN RESPONSE; ALZHEIMERS-DISEASE; ER STRESS; PARKINSONS-DISEASE; OXIDATIVE STRESS; UBIQUITIN LIGASE; BINDING PROTEINS; GENE-EXPRESSION; CROSS-TALK;
D O I
10.3390/cells10071789
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Amyotrophic lateral sclerosis (ALS) is a devastating neurodegenerative disease for which there is currently no cure. Progress in the characterization of other neurodegenerative mechanisms has shifted the spotlight onto an intracellular structure called mitochondria-endoplasmic reticulum (ER) contacts (MERCs) whose ER portion can be biochemically isolated as mitochondria-associated membranes (MAMs). Within the central nervous system (CNS), these structures control the metabolic output of mitochondria and keep sources of oxidative stress in check via autophagy. The most relevant MERC controllers in the ALS pathogenesis are vesicle-associated membrane protein-associated protein B (VAPB), a mitochondria-ER tether, and the ubiquitin-specific chaperone valosin containing protein (VCP). These two systems cooperate to maintain mitochondrial energy output and prevent oxidative stress. In ALS, mutant VAPB and VCP take a central position in the pathology through MERC dysfunction that ultimately alters or compromises mitochondrial bioenergetics. Intriguingly, both proteins are targets themselves of other ALS mutant proteins, including C9orf72, FUS, or TDP-43. Thus, a new picture emerges, where different triggers cause MERC dysfunction in ALS, subsequently leading to well-known pathological changes including endoplasmic reticulum (ER) stress, inflammation, and motor neuron death.
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