| Literature DB >> 31801298 |
Julia Konovalova1, Dmytro Gerasymchuk1,2, Ilmari Parkkinen1, Piotr Chmielarz3, Andrii Domanskyi1.
Abstract
MicroRNAs are post-transcriptional regulators of gene expression, crucial for neuronal differentiation, survival, and activity. Age-related dysregulation of microRNA biogenesis increases neuronal vulnerability to cellular stress and may contribute to the development and progression of neurodegenerative diseases. All major neurodegenerative disorders are also associated with oxidative stress, which is widely recognized as a potential target for protective therapies. Albeit often considered separately, microRNA networks and oxidative stress are inextricably entwined in neurodegenerative processes. Oxidative stress affects expression levels of multiple microRNAs and, conversely, microRNAs regulate many genes involved in an oxidative stress response. Both oxidative stress and microRNA regulatory networks also influence other processes linked to neurodegeneration, such as mitochondrial dysfunction, deregulation of proteostasis, and increased neuroinflammation, which ultimately lead to neuronal death. Modulating the levels of a relatively small number of microRNAs may therefore alleviate pathological oxidative damage and have neuroprotective activity. Here, we review the role of individual microRNAs in oxidative stress and related pathways in four neurodegenerative conditions: Alzheimer's (AD), Parkinson's (PD), Huntington's (HD) disease, and amyotrophic lateral sclerosis (ALS). We also discuss the problems associated with the use of oversimplified cellular models and highlight perspectives of studying microRNA regulation and oxidative stress in human stem cell-derived neurons.Entities:
Keywords: ALS; Alzheimer’s disease; Huntington’s disease; Parkinson’s disease; ROS; microRNA; neurodegeneration; oxidative stress; translation regulation
Mesh:
Substances:
Year: 2019 PMID: 31801298 PMCID: PMC6929013 DOI: 10.3390/ijms20236055
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1MicroRNAs implicated in oxidative stress-related cellular pathways in Alzheimer’s disease.
Figure 2MicroRNAs implicated in oxidative stress-related cellular pathways in Parkinson’s disease.
Figure 3MicroRNAs implicated in oxidative stress-related cellular pathways in Amyotrophic Lateral Sclerosis (AMS).
Figure 4MicroRNAs implicated in oxidative stress-related cellular pathways in Huntington’s Disease.
MicroRNAs associated with neurodegenerative diseases (AD, PD, ALS, and HD) and implicated in regulation of oxidative stress and related cellular pathways. Bolded are microRNAs associated with more than one neurodegenerative disease.
| Disease | Associated microRNAs Involved in Oxidative Stress Regulation | References |
|---|---|---|
| Alzheimer’s disease | miR-107 | [ |
| miR-125b | [ | |
| miR-130b | [ | |
| [ | ||
| miR-134 | [ | |
| miR-145 | [ | |
|
| [ | |
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| [ | |
| miR-186 | [ | |
| miR-193b | [ | |
| miR-200a-3p | [ | |
| miR-20a | [ | |
| miR-210 | [ | |
| miR-219 | [ | |
|
| [ | |
| miR-296 | [ | |
| miR-329 | [ | |
|
| [ | |
| miR-342-5p | [ | |
| miR-98-5p | [ | |
| Parkinson’s disease | miR-106a | [ |
|
| [ | |
| miR-133b | [ | |
| miR-137 | [ | |
| miR-142-5p | [ | |
| miR-144 | [ | |
|
| [ | |
|
| [ | |
|
| [ | |
| miR-16-1 | [ | |
| miR-214 | [ | |
| miR-224 | [ | |
|
| [ | |
|
| [ | |
| miR-301b | [ | |
| miR-320 | [ | |
|
| [ | |
| miR-373 | [ | |
| miR-379 | [ | |
| mir-4639-5p | [ | |
| miR-491 | [ | |
| miR-494 | [ | |
| miR-7 | [ | |
| ALS | miR-142-5p | [ |
|
| [ | |
|
| [ | |
| miR-338-3p | [ | |
|
| [ | |
| Huntington’s disease |
| [ |
| miR-128 | [ | |
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| [ | |
| miR-29a/b/c | [ | |
|
| [ | |
| miR-9 | [ |