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Myelin basic protein recovery during PKU mice lifespan and the potential role of microRNAs on its regulation

髓鞘碱性蛋白 下调和上调 髓鞘 小RNA 信使核糖核酸 生物 少突胶质细胞 内科学 生物信息学 微阵列 内分泌学 中枢神经系统 细胞生物学 基因表达 医学 遗传学 基因
作者
Alessandro Bregalda,Claudia Carducci,Maria Teresa Viscomi,Francesca Pierigè,Sara Biagiotti,Michele Menotta,Federica Biancucci,Tiziana Pascucci,Vincenzo Leuzzi,Mauro Magnani,Luigia Rossi
出处
期刊:Neurobiology of Disease [Elsevier BV]
卷期号:180: 106093-106093 被引量:9
标识
DOI:10.1016/j.nbd.2023.106093
摘要

Untreated phenylketonuria (PKU) patients and PKU animal models show hypomyelination in the central nervous system and white matter damages, which are accompanied by myelin basic protein (MBP) impairment. Despite many assumptions, the primary explanation of the mentioned cerebral outcomes remains elusive. In this study, MBP protein and mRNA expression on brains of wild type (WT) and phenylketonuric (ENU2) mice were analyzed throughout mice lifespan (14-60-180-270-360-540 post-natal days, PND). The results confirmed the low MBP expression at first PND times, while revealed an unprecedented progressive MBP protein expression recovery in aged ENU2 mice. Unexpectedly, unaltered MBP mRNA expression between WT and ENU2 was always observed. Additionally, for the same time intervals, a significant decrease of the phenylalanine concentration in the peripheral blood and brain of ENU2 mice was detected, to date, for the first time. In this scenario, a translational hindrance of MBP during initial and late cerebral development in ENU2 mice was hypothesized, leading to the execution of a microRNA microarray analysis on 60 PND brains, which was followed by a proteomic assay on 60 and 360 PND brains in order to validate in silico miRNA-target predictions. Taken together, miR-218-1-3p, miR-1231-3p and miR-217-5p were considered as the most impactful microRNAs, since a downregulation of their potential targets (MAG, CNTNAP2 and ANLN, respectively) can indirectly lead to a low MBP protein expression. These miRNAs, in addition, follow an opposite expression trend compared to MBP during adulthood, and their target proteins revealed a complete normalization in aged ENU2 mice. In conclusion, these results provide a new perspective on the PKU pathophysiology understanding and on a possible treatment, emphasizing the potential modulating role of differentially expressed microRNAs in MBP expression on PKU brains during PKU mouse lifespan.
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