ALS-associated genes in SCA2 mouse spinal cord transcriptomes. 2020

Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
Department of Neurology, University of Utah, 175 North Medical Drive East, 5th Floor, Salt Lake City, UT 84132, USA.

The spinocerebellar ataxia type 2 (SCA2) gene ATXN2 has a prominent role in the pathogenesis and treatment of amyotrophic lateral sclerosis (ALS). In addition to cerebellar ataxia, motor neuron disease is often seen in SCA2, and ATXN2 CAG repeat expansions in the long normal range increase ALS risk. Also, lowering ATXN2 expression in TDP-43 ALS mice prolongs their survival. Here we investigated the ATXN2 relationship with motor neuron dysfunction in vivo by comparing spinal cord (SC) transcriptomes reported from TDP-43 and SOD1 ALS mice and ALS patients with those from SCA2 mice. SC transcriptomes were determined using an SCA2 bacterial artificial chromosome mouse model expressing polyglutamine expanded ATXN2. SCA2 cerebellar transcriptomes were also determined, and we also investigated the modification of gene expression following treatment of SCA2 mice with an antisense oligonucleotide (ASO) lowering ATXN2 expression. Differentially expressed genes (DEGs) defined three interconnected pathways (innate immunity, fatty acid biosynthesis and cholesterol biosynthesis) in separate modules identified by weighted gene co-expression network analysis. Other key pathways included the complement system and lysosome/phagosome pathways. Of all DEGs in SC, 12.6% were also dysregulated in the cerebellum. Treatment of mice with an ATXN2 ASO also modified innate immunity, the complement system and lysosome/phagosome pathways. This study provides new insights into the underlying molecular basis of SCA2 SC phenotypes and demonstrates annotated pathways shared with TDP-43 and SOD1 ALS mice and ALS patients. It also emphasizes the importance of ATXN2 in motor neuron degeneration and confirms ATXN2 as a therapeutic target.

UI MeSH Term Description Entries
D009046 Motor Neurons Neurons which activate MUSCLE CELLS. Neurons, Motor,Alpha Motorneurons,Motoneurons,Motor Neurons, Alpha,Neurons, Alpha Motor,Alpha Motor Neuron,Alpha Motor Neurons,Alpha Motorneuron,Motoneuron,Motor Neuron,Motor Neuron, Alpha,Motorneuron, Alpha,Motorneurons, Alpha,Neuron, Alpha Motor,Neuron, Motor
D002531 Cerebellum The part of brain that lies behind the BRAIN STEM in the posterior base of skull (CRANIAL FOSSA, POSTERIOR). It is also known as the "little brain" with convolutions similar to those of CEREBRAL CORTEX, inner white matter, and deep cerebellar nuclei. Its function is to coordinate voluntary movements, maintain balance, and learn motor skills. Cerebella,Corpus Cerebelli,Parencephalon,Cerebellums,Parencephalons
D004195 Disease Models, Animal Naturally-occurring or experimentally-induced animal diseases with pathological processes analogous to human diseases. Animal Disease Model,Animal Disease Models,Disease Model, Animal
D004268 DNA-Binding Proteins Proteins which bind to DNA. The family includes proteins which bind to both double- and single-stranded DNA and also includes specific DNA binding proteins in serum which can be used as markers for malignant diseases. DNA Helix Destabilizing Proteins,DNA-Binding Protein,Single-Stranded DNA Binding Proteins,DNA Binding Protein,DNA Single-Stranded Binding Protein,SS DNA BP,Single-Stranded DNA-Binding Protein,Binding Protein, DNA,DNA Binding Proteins,DNA Single Stranded Binding Protein,DNA-Binding Protein, Single-Stranded,Protein, DNA-Binding,Single Stranded DNA Binding Protein,Single Stranded DNA Binding Proteins
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000067698 Ataxin-2 A Poly(A) RNA-binding protein that negatively regulates EGFR ENDOCYTOSIS. An increased risk for developing AMYOTROPHIC LATERAL SCLEROSIS 13 is observed in patients who have more than 23 CAG repeats in the ATXN2 gene coding sequence. Larger CAG expansions in the ATXN2 gene occur in SPINOCEREBELLAR ATAXIA 2 patients. ATXN2 Protein,Ataxin-2 Protein,Atx-2 Protein,SCA2 Protein,Spinocerebellar Ataxia Type 2 Protein,Ataxin 2,Ataxin 2 Protein,Atx 2 Protein,Protein, ATXN2,Protein, Ataxin-2,Protein, Atx-2,Protein, SCA2
D000072105 Superoxide Dismutase-1 A superoxide dismutase (SOD1) that requires copper and zinc ions for its activity to destroy SUPEROXIDE FREE RADICALS within the CYTOPLASM. Mutations in the SOD1 gene are associated with AMYOTROPHIC LATERAL SCLEROSIS-1. Cu-Zn Superoxide Dismutase,Cuprozinc Superoxide Dismutase,SOD-1 Protein,SOD1 Protein,Superoxide Dismutase 1,Cu Zn Superoxide Dismutase,SOD 1 Protein,Superoxide Dismutase, Cu-Zn,Superoxide Dismutase, Cuprozinc
D000690 Amyotrophic Lateral Sclerosis A degenerative disorder affecting upper MOTOR NEURONS in the brain and lower motor neurons in the brain stem and SPINAL CORD. Disease onset is usually after the age of 50 and the process is usually fatal within 3 to 6 years. Clinical manifestations include progressive weakness, atrophy, FASCICULATION, hyperreflexia, DYSARTHRIA, dysphagia, and eventual paralysis of respiratory function. Pathologic features include the replacement of motor neurons with fibrous ASTROCYTES and atrophy of anterior SPINAL NERVE ROOTS and corticospinal tracts. (From Adams et al., Principles of Neurology, 6th ed, pp1089-94) ALS - Amyotrophic Lateral Sclerosis,Lou Gehrig Disease,Motor Neuron Disease, Amyotrophic Lateral Sclerosis,Amyotrophic Lateral Sclerosis With Dementia,Amyotrophic Lateral Sclerosis, Guam Form,Amyotrophic Lateral Sclerosis, Parkinsonism-Dementia Complex of Guam,Amyotrophic Lateral Sclerosis-Parkinsonism-Dementia Complex 1,Charcot Disease,Dementia With Amyotrophic Lateral Sclerosis,Gehrig's Disease,Guam Disease,Guam Form of Amyotrophic Lateral Sclerosis,Lou Gehrig's Disease,Lou-Gehrigs Disease,ALS Amyotrophic Lateral Sclerosis,Amyotrophic Lateral Sclerosis Parkinsonism Dementia Complex 1,Amyotrophic Lateral Sclerosis, Parkinsonism Dementia Complex of Guam,Disease, Guam,Disease, Lou-Gehrigs,Gehrig Disease,Gehrigs Disease,Sclerosis, Amyotrophic Lateral
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013116 Spinal Cord A cylindrical column of tissue that lies within the vertebral canal. It is composed of WHITE MATTER and GRAY MATTER. Coccygeal Cord,Conus Medullaris,Conus Terminalis,Lumbar Cord,Medulla Spinalis,Myelon,Sacral Cord,Thoracic Cord,Coccygeal Cords,Conus Medullari,Conus Terminali,Cord, Coccygeal,Cord, Lumbar,Cord, Sacral,Cord, Spinal,Cord, Thoracic,Cords, Coccygeal,Cords, Lumbar,Cords, Sacral,Cords, Spinal,Cords, Thoracic,Lumbar Cords,Medulla Spinali,Medullari, Conus,Medullaris, Conus,Myelons,Sacral Cords,Spinal Cords,Spinali, Medulla,Spinalis, Medulla,Terminali, Conus,Terminalis, Conus,Thoracic Cords

Related Publications

Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
March 1992, Journal of the neurological sciences,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
March 2003, Neuroreport,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
February 2023, Nature reviews. Neurology,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
June 2010, Neurobiology of aging,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
June 2011, Glia,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
November 2021, Amyotrophic lateral sclerosis & frontotemporal degeneration,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
August 2023, Journal of neuropathology and experimental neurology,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
March 2012, Journal of visualized experiments : JoVE,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
January 2013, PloS one,
Daniel R Scoles, and Warunee Dansithong, and Lance T Pflieger, and Sharan Paul, and Mandi Gandelman, and Karla P Figueroa, and Frank Rigo, and C Frank Bennett, and Stefan M Pulst
June 2011, Neurology,
Copied contents to your clipboard!