Whole-Transcriptome Analysis of Mouse Models with MPTP-Induced Early Stages of Parkinson’s Disease Reveals Stage-Specific Response of Transcriptome and a Possible Role of Myelin-Linked Genes in Neurodegeneration

Parkinson’s disease (PD) is characterized by degeneration of dopaminergic neurons. A whole-transcriptome analysis of the substantia nigra and striatum of an MPTP-induced mouse models of the earliest stages of PD was performed. Functional clustering of differentially represented transcripts revealed...

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Published in:Molecular neurobiology Vol. 55; no. 9; pp. 7229 - 7241
Main Authors: Alieva, A.Kh, Zyrin, V.S., Rudenok, M.M., Kolacheva, A.A., Shulskaya, M.V., Ugryumov, M.V., Slominsky, P.A., Shadrina, M.I.
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Published: New York Springer US 01-09-2018
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Abstract Parkinson’s disease (PD) is characterized by degeneration of dopaminergic neurons. A whole-transcriptome analysis of the substantia nigra and striatum of an MPTP-induced mouse models of the earliest stages of PD was performed. Functional clustering of differentially represented transcripts revealed processes associated with the functioning of synapses, dendrites, axons, and myelination of neuronal projections. All of these processes occur in both the substantia nigra and striatum, but they are aimed at the functioning of neuron terminals in the striatum. One cluster was identified at the earliest stage modeled, i.e., “neuron projection” in the substantia nigra and “transport” in the striatum, and their number increased at subsequent stages. The number of clusters in the striatum predominates over those in the substantia nigra and there is a pronounced increase in the number of clusters from the modeled early stages to the late stages. These findings indicate that the substantia nigra and striatum have unique patterns of changes at each stage. Considering the clustering of individual processes, it was seen that there is a set of hierarchical clusters that overlap only partially at different stages and in different tissues. The data indicate a consistent involvement of the transcriptome in the pathogenesis of PD and highlight the independent role of various brain structures and individual parts of nerve cells in the formation of a response to the development of neurodegeneration. Decreased myelination of neuronal projections may be associated with the development of PD in the models considered.
AbstractList Parkinson’s disease (PD) is characterized by degeneration of dopaminergic neurons. A whole-transcriptome analysis of the substantia nigra and striatum of an MPTP-induced mouse models of the earliest stages of PD was performed. Functional clustering of differentially represented transcripts revealed processes associated with the functioning of synapses, dendrites, axons, and myelination of neuronal projections. All of these processes occur in both the substantia nigra and striatum, but they are aimed at the functioning of neuron terminals in the striatum. One cluster was identified at the earliest stage modeled, i.e., “neuron projection” in the substantia nigra and “transport” in the striatum, and their number increased at subsequent stages. The number of clusters in the striatum predominates over those in the substantia nigra and there is a pronounced increase in the number of clusters from the modeled early stages to the late stages. These findings indicate that the substantia nigra and striatum have unique patterns of changes at each stage. Considering the clustering of individual processes, it was seen that there is a set of hierarchical clusters that overlap only partially at different stages and in different tissues. The data indicate a consistent involvement of the transcriptome in the pathogenesis of PD and highlight the independent role of various brain structures and individual parts of nerve cells in the formation of a response to the development of neurodegeneration. Decreased myelination of neuronal projections may be associated with the development of PD in the models considered.
Author Zyrin, V.S.
Alieva, A.Kh
Rudenok, M.M.
Ugryumov, M.V.
Shadrina, M.I.
Shulskaya, M.V.
Slominsky, P.A.
Kolacheva, A.A.
Author_xml – sequence: 1
  givenname: A.Kh
  surname: Alieva
  fullname: Alieva, A.Kh
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  organization: Institute of Molecular Genetics, Russian Academy of Sciences
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  givenname: V.S.
  surname: Zyrin
  fullname: Zyrin, V.S.
  organization: Institute of Molecular Genetics, Russian Academy of Sciences
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  surname: Rudenok
  fullname: Rudenok, M.M.
  organization: Institute of Molecular Genetics, Russian Academy of Sciences
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  givenname: A.A.
  surname: Kolacheva
  fullname: Kolacheva, A.A.
  organization: Koltzov Institute of Developmental Biology, Russian Academy of Sciences
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  givenname: M.V.
  surname: Shulskaya
  fullname: Shulskaya, M.V.
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  organization: Institute of Molecular Genetics, Russian Academy of Sciences
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  givenname: M.I.
  surname: Shadrina
  fullname: Shadrina, M.I.
  organization: Institute of Molecular Genetics, Russian Academy of Sciences
BackLink https://www.ncbi.nlm.nih.gov/pubmed/29397556$$D View this record in MEDLINE/PubMed
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Issue 9
Keywords Mitochondria
Dopamine
MPTP
Myelin
Parkinson’s disease
Transcriptome
Language English
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Snippet Parkinson’s disease (PD) is characterized by degeneration of dopaminergic neurons. A whole-transcriptome analysis of the substantia nigra and striatum of an...
Parkinson's disease (PD) is characterized by degeneration of dopaminergic neurons. A whole-transcriptome analysis of the substantia nigra and striatum of an...
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SubjectTerms 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine
Animal models
Animals
Axons
Biomedical and Life Sciences
Biomedicine
Cell Biology
Cluster Analysis
Dendrites
Disease Models, Animal
Dopamine receptors
Exosomes - metabolism
Gene expression
Gene Expression Profiling
Genes
Male
Mice, Inbred C57BL
Mitochondria - metabolism
Movement disorders
MPTP
Myelin Sheath - genetics
Myelination
Neostriatum
Nerve Degeneration - genetics
Nerve Degeneration - pathology
Neurobiology
Neurodegeneration
Neurodegenerative diseases
Neurology
Neurosciences
Parkinson Disease - genetics
Parkinson Disease - pathology
Parkinson's disease
RNA, Messenger - genetics
RNA, Messenger - metabolism
Rodents
Substantia nigra
Tissues
Transcriptome - genetics
Title Whole-Transcriptome Analysis of Mouse Models with MPTP-Induced Early Stages of Parkinson’s Disease Reveals Stage-Specific Response of Transcriptome and a Possible Role of Myelin-Linked Genes in Neurodegeneration
URI https://link.springer.com/article/10.1007/s12035-018-0907-1
https://www.ncbi.nlm.nih.gov/pubmed/29397556
https://www.proquest.com/docview/1993690981
Volume 55
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