大鼠脑散射辐射触发非编码RNA片段表达的性别和脑区域特异性变化。

IF 2.5 Q3 GENETICS & HEREDITY
Anna Fiselier, Boseon Byeon, Yaroslav Ilnytskyy, Olga Kovalchuk, Igor Kovalchuk
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引用次数: 0

摘要

非编码RNA片段(ncRFs)是由非编码RNA (ncRNAs)加工而成的小RNA片段。ncRFs具有多种功能,通常具有组织特异性,并且它们的加工过程会因暴露于压力而改变。关于大脑中ncRFs的信息很少。最近,我们报道了脑区域特异性和性别特异性的ncrna表达及其加工成ncRFs。本研究分析了散射辐射下雄性和雌性大鼠额叶皮质(FC)、海马(HIP)和小脑(CER)中ncRFs的表达。我们发现对散射辐射的反应有多个大脑区域和性别特异性的变化。具体来说,我们观察到在HIP和CER中miRNA表达减少,ra-ncRNA reads表达增加,以及在HIP中mtr - na相关reads数量增加。我们还观察到在女性中,在HIP和FC中,以及在男性中,在CER中出现了意义内含子ncrna。在这项工作中,我们还表明,与男性相比,女性CER中tRNA-GlyGCC和tRNA-GlyCCC最常被加工成trf。对目标通路的分析显示,散射辐射样品中的trf和snorf与与各种神经元功能相关的几种通路中的基因相关联。在HIP和CER中,这些通路的代表性不足,而在FC中,它们的代表性过高。这种变化可能在因散射辐射而产生的病理中发挥重要作用,这种效应被称为“放射性脑”,并可能部分解释在暴露于辐射和散射辐射的动物和人类中观察到的性别差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Scatter Irradiation of Rat Brain Triggers Sex- and Brain Region-Specific Changes in the Expression of Non-Coding RNA Fragments.

Scatter Irradiation of Rat Brain Triggers Sex- and Brain Region-Specific Changes in the Expression of Non-Coding RNA Fragments.

Scatter Irradiation of Rat Brain Triggers Sex- and Brain Region-Specific Changes in the Expression of Non-Coding RNA Fragments.

Scatter Irradiation of Rat Brain Triggers Sex- and Brain Region-Specific Changes in the Expression of Non-Coding RNA Fragments.

Non-coding RNA fragments (ncRFs) are small RNA fragments processed from non-coding RNAs (ncRNAs). ncRFs have various functions and are commonly tissue-specific, and their processing is altered by exposure to stress. Information about ncRFs in the brain is scarce. Recently, we reported the brain region-specific and sex-specific expression of ncRNAs and their processing into ncRFs. Here, we analyzed the expression of ncRFs in the frontal cortex (FC), hippocampus (HIP), and cerebellum (CER) of male and female rats exposed to scatter radiation. We found multiple brain region- and sex-specific changes in response to scatter radiation. Specifically, we observed decreased miRNA expression and the increased expression of ra-ncRNA reads in HIP and CER, as well as an increased number of mtR-NA-associated reads in HIP. We also observed the appearance of sense-intronic ncRNAs-in females, in HIP and FC, and in males, in CER. In this work, we also show that tRNA-GlyGCC and tRNA-GlyCCC are most frequently processed to tRFs, in CER in females, as compared to males. An analysis of the targeted pathways revealed that tRFs and snoRFs in scatter radiation samples mapped to genes in several pathways associated with various neuronal functions. While in HIP and CER these pathways were underrepresented, in FC, they were overrepresented. Such changes may play an important role in pathologies that develop in response to scatter radiation, the effect known as "radio-brain", and may in part explain the sex-specific differences observed in animals and humans exposed to radiation and scatter radiation.

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来源期刊
Epigenomes
Epigenomes GENETICS & HEREDITY-
CiteScore
3.80
自引率
0.00%
发文量
38
审稿时长
11 weeks
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