Parkinson's Disease & Movement Disorders Unit, Hospital Clínic/IDIBAPS/CIBERNED/European Reference Network for Rare Neurological Diseases (ERN-RND)/Institut de Neurociències, University of Barcelona, Catalonia, Spain.
Laboratory of Parkinson Disease and Other Neurodegenerative Movement Disorders, IDIBAPS, Barcelona, Catalonia, Spain.
Sci Rep. 2020 Jun 25;10(1):10310. doi: 10.1038/s41598-020-66221-4.
Multiple system atrophy (MSA) is a rare oligodendroglial synucleinopathy of unknown etiopathogenesis including two major clinical variants with predominant parkinsonism (MSA-P) or cerebellar dysfunction (MSA-C).
To identify novel disease mechanisms we performed a blood transcriptomic study investigating differential gene expression changes and biological process alterations in MSA and its clinical subtypes.
We compared the transcriptome from rigorously gender and age-balanced groups of 10 probable MSA-P, 10 probable MSA-C cases, 10 controls from the Catalan MSA Registry (CMSAR), and 10 Parkinson Disease (PD) patients.
Gene set enrichment analyses showed prominent positive enrichment in processes related to immunity and inflammation in all groups, and a negative enrichment in cell differentiation and development of the nervous system in both MSA-P and PD, in contrast to protein translation and processing in MSA-C. Gene set enrichment analysis using expression patterns in different brain regions as a reference also showed distinct results between the different synucleinopathies.
In line with the two major phenotypes described in the clinic, our data suggest that gene expression and biological processes might be differentially affected in MSA-P and MSA-C. Future studies using larger sample sizes are warranted to confirm these results.
多系统萎缩(MSA)是一种罕见的少突胶质细胞突触核蛋白病,其病因发病机制不明,包括以帕金森病为主型(MSA-P)和以小脑功能障碍为主型(MSA-C)两种主要临床亚型。
为了确定新的疾病机制,我们进行了一项血液转录组研究,以研究 MSA 及其临床亚型中差异基因表达变化和生物学过程改变。
我们比较了严格按性别和年龄均衡分组的 10 例可能的 MSA-P、10 例可能的 MSA-C 病例、10 例来自加泰罗尼亚 MSA 登记处(CMSAR)的对照组和 10 例帕金森病(PD)患者的转录组。
基因集富集分析显示,所有组中与免疫和炎症相关的过程均呈明显正富集,而 MSA-P 和 PD 中与神经细胞分化和发育相关的过程呈负富集,而 MSA-C 中则与蛋白质翻译和加工相关。使用不同脑区的表达模式作为参考的基因集富集分析也显示出不同的突触核蛋白病之间存在明显差异。
与临床描述的两种主要表型一致,我们的数据表明 MSA-P 和 MSA-C 中的基因表达和生物学过程可能存在差异。需要进行更大样本量的未来研究来证实这些结果。