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雌性SAMP8(一种与年龄相关认知衰退模型)中mRNA和微小RNA表达谱及表观遗传改变的时间整合分析

Temporal Integrative Analysis of mRNA and microRNAs Expression Profiles and Epigenetic Alterations in Female SAMP8, a Model of Age-Related Cognitive Decline.

作者信息

Cosín-Tomás Marta, Álvarez-López María Jesús, Companys-Alemany Júlia, Kaliman Perla, González-Castillo Celia, Ortuño-Sahagún Daniel, Pallàs Mercè, Griñán-Ferré Christian

机构信息

Department of Pharmacology and Therapeutic Chemistry, Institute of Neuroscience, University of Barcelona, Barcelona, Spain.

Departments of Human Genetics and Pediatrics, Research Institute of the McGill University Health Centre, Montreal, QC, Canada.

出版信息

Front Genet. 2018 Dec 11;9:596. doi: 10.3389/fgene.2018.00596. eCollection 2018.

Abstract

A growing body of research shows that epigenetic mechanisms are critically involved in normal and pathological aging. The Senescence-Accelerated Mouse Prone 8 (SAMP8) can be considered a useful tool to better understand the dynamics of the global epigenetic landscape during the aging process since its phenotype is not fully explained by genetic factors. Here we investigated dysfunctional age-related transcriptional profiles and epigenetic programming enzymes in the hippocampus of 2- and 9-month-old SAMP8 female mice using the Senescent-Accelerated Resistant 1 (SAMR1) mouse strain as control. SAMP8 mice presented 1,062 genes dysregulated at 2 months of age, and 1,033 genes at 9 months, with 92 genes concurrently dysregulated at both ages compared to age-matched SAMR1. SAMP8 mice showed a significant decrease in global DNA methylation (5-mC) at 2 months while hydroxymethylation (5-hmC) levels were increased in SAMP8 mice at 2 and 9 months of age compared to SAMR1. These changes were accompanied by changes in the expression of several enzymes that regulate 5-mC and methylcytosine oxidation. Acetylated H3 and H4 histone levels were significantly diminished in SAMP8 mice at 2-month-old compared to SAMR1 and altered Histone DeACetylase (HDACs) profiles were detected in both young and old SAMP8 mice. We analyzed 84 different mouse miRNAs known to be altered in neurological diseases or involved in neuronal development. Compared with SAMR1, SAMP8 mice showed 28 and 17 miRNAs differentially expressed at 2 and 9 months of age, respectively; 6 of these miRNAs overlapped at both ages. We used several bioinformatic approaches to integrate our data in mRNA:miRNA regulatory networks and functional predictions for young and aged animals. In sum, our study reveals interplay between epigenetic mechanisms and gene networks that seems to be relevant for the progression toward a pathological aging and provides several potential markers and therapeutic candidates for Alzheimer's Disease (AD) and age-related cognitive impairment.

摘要

越来越多的研究表明,表观遗传机制在正常衰老和病理性衰老过程中起着关键作用。衰老加速易患8型小鼠(SAMP8)可被视为一种有用的工具,用于更好地理解衰老过程中全球表观遗传景观的动态变化,因为其表型不能完全由遗传因素解释。在这里,我们以抗衰老加速1型(SAMR1)小鼠品系作为对照,研究了2月龄和9月龄SAMP8雌性小鼠海马中功能失调的年龄相关转录谱和表观遗传编程酶。与年龄匹配的SAMR1相比,SAMP8小鼠在2月龄时有1062个基因失调,在9月龄时有1033个基因失调,其中92个基因在两个年龄段均同时失调。SAMP8小鼠在2月龄时整体DNA甲基化(5-mC)显著降低,而与SAMR1相比,SAMP8小鼠在2月龄和9月龄时羟甲基化(5-hmC)水平升高。这些变化伴随着几种调节5-mC和甲基胞嘧啶氧化的酶表达的变化。与SAMR1相比,2月龄SAMP8小鼠乙酰化H3和H4组蛋白水平显著降低,并且在年轻和年老的SAMP8小鼠中均检测到组蛋白去乙酰化酶(HDACs)谱的改变。我们分析了84种已知在神经疾病中发生改变或参与神经元发育的不同小鼠微小RNA(miRNA)。与SAMR1相比,SAMP8小鼠在2月龄和9月龄时分别有28个和17个miRNA差异表达;其中6个miRNA在两个年龄段均重叠。我们使用了几种生物信息学方法将我们的数据整合到mRNA:miRNA调控网络以及对年轻和年老动物的功能预测中。总之,我们的研究揭示了表观遗传机制与基因网络之间的相互作用,这似乎与病理性衰老的进展相关,并为阿尔茨海默病(AD)和年龄相关认知障碍提供了几种潜在的标志物和治疗候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ec1/6297390/c5992c70a17c/fgene-09-00596-g0001.jpg

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