Spinocerebellar ataxia type 3 (SCA3/MJD) is a polyQ neurodegenerative disease where the presymptomatic phase of pathogenesis is unknown. Therefore, we investigated the molecular network of transcriptomic and proteomic triggers in young presymptomatic SCA3/MJD brain from Ki91 knock-in mouse. We found that transcriptional dysregulations resulting from mutant ataxin-3 are not occurring in young Ki91 mice, while old Ki91 mice and also postmitotic patient SCA3 neurons demonstrate the late transcriptomic changes. Unlike the lack of early mRNA changes, we have identified numerous early changes of total proteins and phosphoproteins in 2-month-old Ki91 mouse cortex and cerebellum. We discovered the network of processes in presymptomatic SCA3 with three main groups of disturbed processes comprising altered proteins: (I) modulation of protein levels and DNA damage (Pabpc1, Ddb1, Nedd8), (II) formation of neuronal cellular structures (Tubb3, Nefh, p-Tau), and (III) neuronal function affected by processes following perturbed cytoskeletal formation (Mt-Co3, Stx1b, p-Syn1). Phosphoproteins downregulate in the young Ki91 mouse brain and their phosphosites are associated with kinases that interact with ATXN3 such as casein kinase, Camk2, and kinases controlled by another Atxn3 interactor p21 such as Gsk3, Pka, and Cdk kinases. We conclude that the onset of SCA3 pathology occurs without altered transcript level and is characterized by changed levels of proteins responsible for termination of translation, DNA damage, spliceosome, and protein phosphorylation. This disturbs global cellular processes such as cytoskeleton and transport of vesicles and mitochondria along axons causing energy deficit and neurodegeneration also manifesting in an altered level of transcripts at later ages.
Altered Levels of Proteins and Phosphoproteins, in the Absence of Early Causative Transcriptional Changes, Shape the Molecular Pathogenesis in the Brain of Young Presymptomatic Ki91 SCA3/MJD Mouse.
在缺乏早期致病转录变化的情况下,蛋白质和磷酸化蛋白水平的改变塑造了年轻的无症状 Ki91 SCA3/MJD 小鼠大脑中的分子发病机制
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作者:Wiatr Kalina, Piasecki Piotr, Marczak Åukasz, Wojciechowski PaweÅ, Kurkowiak MaÅgorzata, PÅoski RafaÅ, Rydzanicz MaÅgorzata, Handschuh Luiza, Jungverdorben Johannes, Brüstle Oliver, Figlerowicz Marek, Figiel Maciej
| 期刊: | Molecular Neurobiology | 影响因子: | 4.300 |
| 时间: | 2019 | 起止号: | 2019 Dec;56(12):8168-8202 |
| doi: | 10.1007/s12035-019-01643-4 | 研究方向: | 免疫/内分泌 |
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