ABCB1基因多态性及其对轻度认知障碍认知能力下降的贡献:新一代测序研究

Omar Šerý, Kateřina Sheardová, Radka Dziedzinska, Tomáš Zeman, Martin Vyhnálek, Hana Marková, Jan Laczó, Jan Lochman, Kamila Vrzalová, Vladimir J Balcar, Jakub Hort
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引用次数: 0

摘要

ABCB1基因编码atp依赖性转位酶ABCB1,在淀粉样蛋白- β (a β)肽的清除和胆固醇的转运中起着至关重要的作用,暗示其与阿尔茨海默病的发病机制有关。该研究旨在研究ABCB1基因多态性与MCI患者认知能力下降之间的关系,特别是语言功能。一项来自捷克脑衰老研究的纵向队列研究涉及1005名参与者。参与者包括患有阿尔茨海默病、健忘性轻度认知障碍(MCI)、非健忘性轻度认知障碍、主观认知能力下降和健康对照的个体。利用新一代测序技术对整个ABCB1基因进行分析。认知表现是通过一系列综合的神经心理学测试来评估的,包括波士顿命名测试和语义语言流畅性测试。10个ABCB1多态性(rs55912869、rss56243536、rs10225473、rs10274587、rs2235040、rs12720067、rs12334183、rs10260862、rs201620488、rs28718458)与认知表现显著相关,尤其是在遗忘型MCI患者的语言能力下降方面。硅分析显示,这些多态性可能影响转录因子(hnf -3 α, C/EBPβ, gr - α)的结合位点和新的外显子剪接增强子的产生。此外,多态性rs55912869被鉴定为microRNA hsa-mir-3163的潜在结合位点。我们的研究结果强调了ABCB1多态性在失忆性轻度认知障碍患者的认知能力下降,特别是语言功能下降中的重要作用。这些多态性可能通过与mirna、转录因子和其他剪接机制的相互作用影响基因的表达和功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ABCB1 Gene Polymorphisms and Their Contribution to Cognitive Decline in Mild Cognitive Impairment: A Next-Generation Sequencing Study.

The ABCB1 gene, encoding the ATP-dependent translocase ABCB1, plays a crucial role in the clearance of amyloid-beta (Aβ) peptides and the transport of cholesterol, implicating it in the pathogenesis of Alzheimer's disease. The study aims to investigate the association between polymorphisms in the ABCB1 gene and cognitive decline in individuals with mild cognitive impairment (MCI), particularly focusing on language function. A longitudinal cohort study involving 1 005 participants from the Czech Brain Aging Study was conducted. Participants included individuals with Alzheimer's disease, amnestic MCI, non-amnestic MCI, subjective cognitive decline, and healthy controls. Next-generation sequencing was utilized to analyze the entire ABCB1 gene. Cognitive performance was assessed using a comprehensive battery of neuropsychological tests, including the Boston Naming Test and the semantic verbal fluency test. Ten ABCB1 polymorphisms (rs55912869, rs56243536, rs10225473, rs10274587, rs2235040, rs12720067, rs12334183, rs10260862, rs201620488, and rs28718458) were significantly associated with cognitive performance, particularly in language decline among amnestic MCI patients. In silico analyses revealed that some of these polymorphisms may affect the binding sites for transcription factors (HNF-3alpha, C/EBPβ, GR-alpha) and the generation of novel exonic splicing enhancers. Additionally, polymorphism rs55912869 was identified as a potential binding site for the microRNA hsa-mir-3163. Our findings highlight the significant role of ABCB1 polymorphisms in cognitive decline, particularly in language function, among individuals with amnestic MCI. These polymorphisms may influence gene expression and function through interactions with miRNAs, transcription factors, and alternative splicing mechanisms.

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