Genetics of amyotrophic lateral sclerosis: seeking therapeutic targets in the era of gene therapy

被引:80
作者
Suzuki, Naoki [1 ]
Nishiyama, Ayumi [1 ]
Warita, Hitoshi [1 ]
Aoki, Masashi [1 ]
机构
[1] Tohoku Univ, Dept Neurol, Grad Sch Med, Aoba Ku, 1-1 Seiryo Machi, Sendai, Miyagi, Japan
关键词
SUPEROXIDE-DISMUTASE GENE; C9ORF72 REPEAT EXPANSION; GENOME-WIDE ASSOCIATION; LINKED SOD1 MUTANTS; NUCLEOCYTOPLASMIC TRANSPORT DEFECTS; FRONTOTEMPORAL LOBAR DEGENERATION; ANTEROGRADE AXONAL-TRANSPORT; GGGGCC HEXANUCLEOTIDE REPEAT; MESSENGER-RNA LOCALIZATION; NUCLEAR IMPORT RECEPTOR;
D O I
10.1038/s10038-022-01055-8
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Amyotrophic lateral sclerosis (ALS) is an intractable disease that causes respiratory failure leading to mortality. The main locus of ALS is motor neurons. The success of antisense oligonucleotide (ASO) therapy in spinal muscular atrophy (SMA), a motor neuron disease, has triggered a paradigm shift in developing ALS therapies. The causative genes of ALS and disease-modifying genes, including those of sporadic ALS, have been identified one after another. Thus, the freedom of target choice for gene therapy has expanded by ASO strategy, leading to new avenues for therapeutic development. Tofersen for superoxide dismutase 1 (SOD1) was a pioneer in developing ASO for ALS. Improving protocols and devising early interventions for the disease are vital. In this review, we updated the knowledge of causative genes in ALS. We summarized the genetic mutations identified in familial ALS and their clinical features, focusing on SOD1, fused in sarcoma (FUS), and transacting response DNA-binding protein. The frequency of the C9ORF72 mutation is low in Japan, unlike in Europe and the United States, while SOD1 and FUS are more common, indicating that the target mutations for gene therapy vary by ethnicity. A genome-wide association study has revealed disease-modifying genes, which could be the novel target of gene therapy. The current status and prospects of gene therapy development were discussed, including ethical issues. Furthermore, we discussed the potential of axonal pathology as new therapeutic targets of ALS from the perspective of early intervention, including intra-axonal transcription factors, neuromuscular junction disconnection, dysregulated local translation, abnormal protein degradation, mitochondrial pathology, impaired axonal transport, aberrant cytoskeleton, and axon branching. We simultaneously discuss important pathological states of cell bodies: persistent stress granules, disrupted nucleocytoplasmic transport, and cryptic splicing. The development of gene therapy based on the elucidation of disease-modifying genes and early intervention in molecular pathology is expected to become an important therapeutic strategy in ALS.
引用
收藏
页码:131 / 152
页数:22
相关论文
共 320 条
[1]  
Akiyama T, 2019, EBIOMEDICINE
[2]   Genotype-phenotype relationships in familial amyotrophic lateral sclerosis with FUS/TLS mutations in Japan [J].
Akiyama, Tetsuya ;
Warita, Hitoshi ;
Kato, Masaaki ;
Nishiyama, Ayumi ;
Izumi, Rumiko ;
Ikeda, Chikako ;
Kamada, Masaki ;
Suzuki, Naoki ;
Aoki, Masashi .
MUSCLE & NERVE, 2016, 54 (03) :398-404
[3]   Structural variation analysis of 6,500 whole genome sequences in amyotrophic lateral sclerosis [J].
Al Khleifat, Ahmad ;
Iacoangeli, Alfredo ;
van Vugt, Joke J. F. A. ;
Bowles, Harry ;
Moisse, Matthieu ;
Zwamborn, Ramona A. J. ;
van der Spek, Rick A. A. ;
Shatunov, Aleksey ;
Cooper-Knock, Johnathan ;
Topp, Simon ;
Byrne, Ross ;
Gellera, Cinzia ;
Lopez, Victoria ;
Jones, Ashley R. ;
Opie-Martin, Sarah ;
Vural, Atay ;
Campos, Yolanda ;
van Rheenen, Wouter ;
Kenna, Brendan ;
Van Eijk, Kristel R. ;
Kenna, Kevin ;
Weber, Markus ;
Smith, Bradley ;
Fogh, Isabella ;
Silani, Vincenzo ;
Morrison, Karen E. ;
Dobson, Richard ;
van Es, Michael A. ;
McLaughlin, Russell L. ;
Vourc'h, Patrick ;
Chio, Adriano ;
Corcia, Philippe ;
de Carvalho, Mamede ;
Gotkine, Marc ;
Panades, Monica P. ;
Mora, Jesus S. ;
Shaw, Pamela J. ;
Landers, John E. ;
Glass, Jonathan D. ;
Shaw, Christopher E. ;
Basak, Nazli ;
Hardiman, Orla ;
Robberecht, Wim ;
Van Damme, Philip ;
van den Berg, Leonard H. ;
Veldink, Jan H. ;
Al-Chalabi, Ammar .
NPJ GENOMIC MEDICINE, 2022, 7 (01)
[4]   Gene discovery in amyotrophic lateral sclerosis: implications for clinical management [J].
Al-Chalabi, Ammar ;
van den Berg, Leonard H. ;
Veldink, Jan .
NATURE REVIEWS NEUROLOGY, 2017, 13 (02) :96-104
[5]   Axonal Transport of TDP-43 mRNA Granules Is Impaired by ALS-Causing Mutations [J].
Alami, Nael H. ;
Smith, Rebecca B. ;
Carrasco, Monica A. ;
Williams, Luis A. ;
Winborn, Christina S. ;
Han, Steve S. W. ;
Kiskinis, Evangelos ;
Winborn, Brett ;
Freibaum, Brian D. ;
Kanagaraj, Anderson ;
Clare, Alison J. ;
Badders, Nisha M. ;
Bilican, Bilada ;
Chaum, Edward ;
Chandran, Siddharthan ;
Shaw, Christopher E. ;
Eggan, Kevin C. ;
Maniatis, Tom ;
Taylor, J. Paul .
NEURON, 2014, 81 (03) :536-543
[6]   Modeling Motor Neuron Resilience in ALS Using Stem Cells [J].
Allodi, Ilary ;
Nijssen, Jik ;
Benitez, Julio Aguila ;
Schweingruber, Christoph ;
Fuchs, Andrea ;
Bonvicini, Gillian ;
Cao, Ming ;
Kiehn, Ole ;
Hedlund, Eva .
STEM CELL REPORTS, 2019, 12 (06) :1329-1341
[7]   Axonal TDP-43 condensates drive neuromuscular junction disruption through inhibition of local synthesis of nuclear encoded mitochondrial proteins [J].
Altman, Topaz ;
Ionescu, Ariel ;
Ibraheem, Amjad ;
Priesmann, Dominik ;
Gradus-Pery, Tal ;
Farberov, Luba ;
Alexandra, Gayster ;
Shelestovich, Natalia ;
Dafinca, Ruxandra ;
Shomron, Noam ;
Rage, Florence ;
Talbot, Kevin ;
Ward, Michael E. ;
Dori, Amir ;
Kruger, Marcus ;
Perlson, Eran .
NATURE COMMUNICATIONS, 2021, 12 (01)
[8]   Gene therapy for ALS: A review [J].
Amado, Defne A. ;
Davidson, Beverly L. .
MOLECULAR THERAPY, 2021, 29 (12) :3345-3358
[9]   The multiple sclerosis drug fingolimod (FTY720) stimulates neuronal gene expression, axonal growth and regeneration [J].
Anastasiadou, Sofia ;
Knoell, Bernd .
EXPERIMENTAL NEUROLOGY, 2016, 279 :243-260
[10]   Clinical genetics of amyotrophic lateral sclerosis: what do we really know? [J].
Andersen, Peter M. ;
Al-Chalabi, Ammar .
NATURE REVIEWS NEUROLOGY, 2011, 7 (11) :603-615