A special focus on polyadenylation and alternative polyadenylation in neurodegenerative diseases: A systematic review

肌萎缩侧索硬化 疾病 聚腺苷酸 神经科学 生物 生物信息学 转化研究 基因表达 计算生物学 遗传学 医学 基因 病理 生物技术
作者
Tarlan Yeganeh Markid,Azam Pourahmadiyan,Soroosh Hamzeh,Mirmohsen Sharifi‐Bonab,Milad Asadi,Abbas Jalaiei,Maryam Rezazadeh,Soudeh Ghafouri‐Fard
出处
期刊:Journal of Neurochemistry [Wiley]
标识
DOI:10.1111/jnc.16255
摘要

Abstract Neurodegenerative diseases (NDDs) are one of the prevailing conditions characterized by progressive neuronal loss. Polyadenylation (PA) and alternative polyadenylation (APA) are the two main post‐transcriptional events that regulate neuronal gene expression and protein production. This systematic review analyzed the available literature on the role of PA and APA in NDDs, with an emphasis on their contributions to disease development. A comprehensive literature search was performed using the PubMed, Scopus, Cochrane, Google Scholar, Embase, Web of Science, and ProQuest databases. The search strategy was developed based on the framework introduced by Arksey and O'Malley and supplemented by the inclusion and exclusion criteria. The study selection was performed by two independent reviewers. Extraction and data organization were performed in accordance with the predefined variables. Subsequently, quantitative and qualitative analyses were performed. Forty‐seven studies were included, related to a variety of NDDs, namely Alzheimer's disease, Parkinson's disease, Huntington's disease, and amyotrophic lateral sclerosis. Disease induction was performed using different models, including human tissues, animal models, and cultured cells. Most investigations were related to PA, although some were related to APA or both. Amyloid precursor protein (APP), Tau, SNCA, and STMN2 were the major genes identified; most of the altered PA patterns were related to mRNA stability and translation efficiency. This review particularly underscores the key roles of PA and APA in the pathogenesis of NDDs through their mechanisms that contribute to gene expression dysregulation, protein aggregation, and neuronal dysfunction. Insights into these mechanisms may lead to new therapeutic strategies focused on the modulation of PA and APA activities. Further research is required to investigate the translational potential of targeting these pathways for NDD treatment. image
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