可转座元件在长期记忆形成中的作用

IF 0.6 4区 生物学 Q4 GENETICS & HEREDITY
R. N. Mustafin, E. K. Khusnutdinova
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引用次数: 0

摘要

摘要 一些实验研究对突触可塑性的意义提出了质疑,并证明了转座元件在记忆巩固中的作用。这是由于激活的可转座元件对基因表达的顺式调节影响,以及插入大脑功能相关基因附近的新基因组位点。内源性逆转录病毒的 RNA 和蛋白质被运输到树突突触,并通过在囊泡中形成病毒样颗粒来传递信息,从而改变邻近细胞的基因表达。正因为如此,突触可塑性与核编码之间的关系得到了保证,因为转座元件也是表观遗传调控的驱动力,这是因为它们与非编码 RNA 之间的关系。通过对科学文献的分析,我们确定了 17 种来自转座元件的 microRNA 在正常记忆形成过程中的作用。在记忆受损的神经退行性疾病中,我们发现 44 种源自转座元件的 microRNA 表达受损。这表明,在神经退行性疾病中,以病理转座子激活为靶点,利用 microRNAs 作为工具恢复记忆是有潜力的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Role of Transposable Elements in Long-Term Memory Formation

The Role of Transposable Elements in Long-Term Memory Formation

Abstract

A number of experimental studies are described that challenge the significance of synaptic plasticity and prove the role of transposable elements in memory consolidation. This is due to the cis-regulatory influence of activated transposable elements on gene expression, as well as insertions into new genomic loci near the genes involved in brain functioning. RNAs and proteins of endogenous retroviruses are transported to dendritic synapses and transmit information to change gene expression in neighboring cells through the formation of virus-like particles in vesicles. Because of this, the relationship between synaptic plasticity and nuclear coding is ensured, since transposable elements are also drivers of epigenetic regulation owing to the relationship to the noncoding RNAs derived from them. Our analysis of the scientific literature allowed us to identify the role of 17 microRNAs derived from transposable elements in normal memory formation. In neurodegenerative diseases with memory impairment, we identified impaired expression of 44 microRNAs derived from transposable elements. This demonstrates the potential for targeting pathological transposon activation in neurodegenerative diseases for memory restoration using microRNAs as tools.

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来源期刊
Russian Journal of Genetics
Russian Journal of Genetics 生物-遗传学
CiteScore
1.00
自引率
33.30%
发文量
126
审稿时长
1 months
期刊介绍: Russian Journal of Genetics is a journal intended to make significant contribution to the development of genetics. The journal publishes reviews and experimental papers in the areas of theoretical and applied genetics. It presents fundamental research on genetic processes at molecular, cell, organism, and population levels, including problems of the conservation and rational management of genetic resources and the functional genomics, evolutionary genomics and medical genetics.
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