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Behavioral and omics analyses study on potential involvement of dipeptide balenine through supplementation in diet of senescence-accelerated mouse prone 8

机译:行为学和组学分析研究通过补充衰老加速小鼠俯卧8饮食中二肽苯丙氨酸的潜在参与

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摘要

This study investigates effects of dipeptide balenine, as a major component of whale meat extract (hereafter, WME), supplementation on senescence-accelerated mouse prone 8 (SAMP8), an Alzheimer's disease (AD) model at level of learning and memory formation and brain expression profiles genome-wide in brain. Mice fed experimental balenine (+ WME) supplemented diet for 26 weeks were subjected to four behavioral tests – open field, Y-maze, novel object recognition, and water-filled multiple T-maze – to examine effects on learning and memory. Brain transcriptome of SAMP8 mice-fed the WME diet over control low-safflower oil (LSO) diet-fed mice was delineated on a 4 × 44 K mouse whole genome DNA microarray chip. Results revealed the WME diet not only induced improvements in the learning and memory formation but also positively modulated changes in the brain of the SAMP8 mouse; the gene inventories are publically available for analysis by the scientific community. Interestingly, the SAMP8 mouse model presented many genetic characteristics of AD, and numerous novel molecules (Slc2a5, Treh, Fbp1, Aldob, Ppp1r1a, DNase1, Agxt2l1, Cyp2e1, Acsm1, Acsm2, and Pah) were revealed over the SAMR1 (senescence-accelerated mouse resistant 1) mouse, to be oppositely regulated/recovered under the balenine (+ WME) supplemented diet regime by DNA microarray and bioinformatics analyses. Our present study demonstrates an experimental strategy to understand the effects of dipeptide balenine, prominetly contained in meat diet, on SAMP8, providing new insight into whole brain transcriptome changes genome-wide. The gene expression data has been deposited into the Gene Expression Omnibus (GEO): . The data will be a valuable resource in examining the effects of natural products, and which could also serve as a human model for further functional analysis and investigation.
机译:这项研究调查了作为鲸鱼肉提取物(以下简称WME)的主要成分的二肽苯丙氨酸对衰老加速小鼠俯卧8(SAMP8),阿尔茨海默氏病(AD)模型在学习和记忆形成以及大脑水平上的作用。在大脑中全基因组的表达谱。喂食补充实验性苯丙氨酸(+ WME)饮食26周的小鼠接受了四项行为测试-开放视野,Y迷宫,新颖物体识别和充满水的多个T迷宫-以检查对学习和记忆的影响。在4×44 K小鼠全基因组DNA微阵列芯片上描绘了SAMP8小鼠喂养的WME饮食优于对照低红花油(LSO)饮食喂养的小鼠的大脑转录组。结果显示,WME饮食不仅可以改善学习和记忆形成,而且可以积极调节SAMP8小鼠大脑的变化。基因清单可供科学界公开分析。有趣的是,SAMP8小鼠模型展现了AD的许多遗传特征,并且在SAMR1(衰老加速)上揭示了许多新分子(Slc2a5,Treh,Fbp1,Aldob,Ppp1r1a,DNase1,Agxt2l1,Cyp2e1,Acsm1,Acsm2和Pah)。抗小鼠抗性1)小鼠,通过DNA微阵列和生物信息学分析,在补充了甘油(+ WME)的饮食方案下被相反地调节/恢复。我们的当前研究表明了一种实验策略,可以了解肉食中主要包含的二肽苯丙氨酸对SAMP8的影响,从而为全脑转录组变化在全基因组范围内提供新见解。基因表达数据已保存到Gene Expression Omnibus(GEO)中。该数据将是检查天然产物影响的宝贵资源,并且还可以用作进一步功能分析和研究的人类模型。

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