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Citations to this article

Mutant ataxin1 disrupts cerebellar development in spinocerebellar ataxia type 1
Chandrakanth Reddy Edamakanti, … , Marco Martina, Puneet Opal
Chandrakanth Reddy Edamakanti, … , Marco Martina, Puneet Opal
Published March 13, 2018
Citation Information: J Clin Invest. 2018;128(6):2252-2265. https://doi.org/10.1172/JCI96765.
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Research Article Neuroscience Article has an altmetric score of 75

Mutant ataxin1 disrupts cerebellar development in spinocerebellar ataxia type 1

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Abstract

Spinocerebellar ataxia type 1 (SCA1) is an adult-onset neurodegenerative disease caused by a polyglutamine expansion in the protein ATXN1, which is involved in transcriptional regulation. Although symptoms appear relatively late in life, primarily from cerebellar dysfunction, pathogenesis begins early, with transcriptional changes detectable as early as a week after birth in SCA1-knockin mice. Given the importance of this postnatal period for cerebellar development, we asked whether this region might be developmentally altered by mutant ATXN1. We found that expanded ATXN1 stimulates the proliferation of postnatal cerebellar stem cells in SCA1 mice. These hyperproliferating stem cells tended to differentiate into GABAergic inhibitory interneurons rather than astrocytes; this significantly increased the GABAergic inhibitory interneuron synaptic connections, disrupting cerebellar Purkinje cell function in a non–cell autonomous manner. We confirmed the increased basket cell–Purkinje cell connectivity in human SCA1 patients. Mutant ATXN1 thus alters the neural circuitry of the developing cerebellum, setting the stage for the later vulnerability of Purkinje cells to SCA1. We propose that other late-onset degenerative diseases may also be rooted in subtle developmental derailments.

Authors

Chandrakanth Reddy Edamakanti, Jeehaeh Do, Alessandro Didonna, Marco Martina, Puneet Opal

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 Total
Citations: 1 5 4 4 5 8 4 3 34
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Citations to this article (34)

Title and authors Publication Year
Neurodevelopmental Implications Underpinning Hereditary Spastic Paraplegia
Zhi Y, Shi Y, Lu D, Xu D
CNS Neuroscience & Therapeutics 2025
Comparative Transcriptomic Analysis of Cerebellar Astrocytes across Developmental Stages and Brain Regions
Kwon W, Choi DJ, Yu K, Williamson MR, Murali S, Ko Y, Woo J, Deneen B
International journal of molecular sciences 2024
Probing cerebellar circuit dysfunction in rodent models of spinocerebellar ataxia by means of in vivo two-photon calcium imaging
Douthwaite C, Tietje C, Ye X, Liebscher S
2024
CAG repeat mosaicism is gene specific in spinocerebellar ataxias.
Kacher R, Lejeune FX, David I, Boluda S, Coarelli G, Leclere-Turbant S, Heinzmann A, Marelli C, Charles P, Goizet C, Kabir N, Hilab R, Jornea L, Six J, Dommergues M, Fauret AL, Brice A, Humbert S, Durr A
The American Journal of Human Genetics 2024
The Role of Protein Quantity Control in Polyglutamine Spinocerebellar Ataxias.
Zhang H, Wang X
Cerebellum (London, England) 2024
Expanded ATXN1 alters transcription and calcium signaling in SCA1 human motor neurons differentiated from induced pluripotent stem cells.
Sheeler C, Labrada E, Duvick L, Thompson LM, Zhang Y, Orr HT, Cvetanovic M
Neurobiology of disease 2024
Reactive Bergmann glia play a central role in Spinocerebellar ataxia inflammation via the JNK pathway
Chandrakanth Edamakanti, Vishwa Mohan, Puneet Opal
Journal of Neuroinflammation 2023
Therapeutic Strategies for Spinocerebellar Ataxia Type 1
Kerkhof LM, van de Warrenburg BP, van Roon-Mom WM, Buijsen RA
Biomolecules 2023
Early molecular layer interneuron hyperactivity triggers Purkinje neuron degeneration in SCA1
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Neuron 2023
Longitudinal single-cell transcriptional dynamics throughout neurodegeneration in SCA1
Tejwani L, Ravindra NG, Lee C, Cheng Y, Nguyen B, Luttik K, Ni L, Zhang S, Morrison LM, Gionco J, Xiang Y, Yoon J, Ro H, Haidery F, Grijalva RM, Bae E, Kim K, Martuscello RT, Orr HT, Zoghbi HY, McLoughlin HS, Ranum LP, Shakkottai VG, Faust PL, Wang S, van Dijk D, Lim J
Neuron 2023
Indirect Negative Effect of Mutant Ataxin-1 on Short- and Long-Term Synaptic Plasticity in Mouse Models of Spinocerebellar Ataxia Type 1
Shuvaev AN, Belozor OS, Mozhei OI, Shuvaev AN, Fritsler YV, Khilazheva ED, Mosyagina AI, Hirai H, Teschemacher AG, Kasparov S
Cells 2022
Identification of the ataxin-1 interaction network and its impact on spinocerebellar ataxia type 1.
Chen JM, Chen SK, Jin PP, Sun SC
Human genomics 2022
Differential effects of Wnt-β-catenin signaling in Purkinje cells and Bergmann glia in spinocerebellar ataxia type 1
Luttik K, Tejwani L, Ju H, Driessen T, Smeets CJ, Edamakanti CR, Khan A, Yun J, Opal P, Lim J
Proceedings of the National Academy of Sciences 2022
Cerebellar development after preterm birth
Iskusnykh IY, Chizhikov VV
Frontiers in Cell and Developmental Biology 2022
Human Induced Pluripotent Stem Cell-Based Modelling of Spinocerebellar Ataxias
MP Hommersom, RA Buijsen, WM van Roon-Mom, BP van de Warrenburg, H van Bokhoven
Stem Cell Reviews and Reports 2021
Consensus Paper: Strengths and Weaknesses of Animal Models of Spinocerebellar Ataxias and Their Clinical Implications
J Cendelin, M Cvetanovic, M Gandelman, H Hirai, HT Orr, SM Pulst, M Strupp, F Tichanek, J Tuma, M Manto
The Cerebellum 2021
The importance of non-coding RNAs in environmental stress-related developmental brain disorders: A systematic review of evidence associated with exposure to alcohol, anesthetic drugs, nicotine, and viral infections
T Arzua, C Jiang, Y Yan, X Bai
Neuroscience and biobehavioral reviews 2021
Juvenile Huntington’s Disease and Other PolyQ Diseases, Update on Neurodevelopmental Character and Comparative Bioinformatic Review of Transcriptomic and Proteomic Data
K Świtońska-Kurkowska, B Krist, J Delimata, M Figiel
Frontiers in Cell and Developmental Biology 2021
Developmental Alterations in Adult‐Onset Neurodegenerative Disorders: Lessons from Polyglutamine Diseases
C Edamakanti, P Opal
Movement disorders : official journal of the Movement Disorder Society 2021
Pathogenic mechanisms underlying spinocerebellar ataxia type 1
L Tejwani, J Lim
Cellular and Molecular Life Sciences 2020
Huntington’s disease alters human neurodevelopment
M Barnat, M Capizzi, E Aparicio, S Boluda, D Wennagel, R Kacher, R Kassem, S Lenoir, F Agasse, BY Braz, JP Liu, J Ighil, A Tessier, SO Zeitlin, C Duyckaerts, M Dommergues, A Durr, S Humbert
Science 2020
Cerebellar Development and Circuit Maturation: A Common Framework for Spinocerebellar Ataxias
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Frontiers in neuroscience 2020
Ataxin-1 regulates B cell function and the severity of autoimmune experimental encephalomyelitis
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Proceedings of the National Academy of Sciences 2020
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Brain Pathology 2020
uKIN Combines New and Prior Information with Guided Network Propagation to Accurately Identify Disease Genes
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Brainstem and striatal volume changes are detectable in under 1 year and predict motor decline in spinocerebellar ataxia type 1
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PDK1 Regulates the Maintenance of Cell Body and the Development of Dendrites of Purkinje Cells by pS6 and PKCγ
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The Journal of neuroscience : the official journal of the Society for Neuroscience 2020
Self-assembling vascular endothelial growth factor nanoparticles improve function in spinocerebellar ataxia type 1
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Loss-of-Huntingtin in Medial and Lateral Ganglionic Lineages Differentially Disrupts Regional Interneuron and Projection Neuron Subtypes and Promotes Huntington's Disease-Associated Behavioral, Cellular, and Pathological Hallmarks
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The Journal of neuroscience : the official journal of the Society for Neuroscience 2019
Moving Towards Therapy in SCA1: Insights from Molecular Mechanisms, Identification of Novel Targets, and Planning for Human Trials
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MicroRNA expression analysis identifies a subset of downregulated miRNAs in ALS motor neuron progenitors
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