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Comprehensive Analysis of Transcription Dynamics from Brain Samples Following Behavioral Experience

机译:行为经验后脑样本转录动力学的综合分析

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摘要

The encoding of experiences in the brain and the consolidation of long-term memories depend on gene transcription. Identifying the function of specific genes in encoding experience is one of the main objectives of molecular neuroscience. Furthermore, the functional association of defined genes with specific behaviors has implications for understanding the basis of neuropsychiatric disorders. Induction of robust transcription programs has been observed in the brains of mice following various behavioral manipulations. While some genetic elements are utilized recurrently following different behavioral manipulations and in different brain nuclei, transcriptional programs are overall unique to the inducing stimuli and the structure in which they are studied1,2.In this publication, a protocol is described for robust and comprehensive transcriptional profiling from brain nuclei of mice in response to behavioral manipulation. The protocol is demonstrated in the context of analysis of gene expression dynamics in the nucleus accumbens following acute cocaine experience. Subsequent to a defined in vivo experience, the target neural tissue is dissected; followed by RNA purification, reverse transcription and utilization of microfluidic arrays for comprehensive qPCR analysis of multiple target genes. This protocol is geared towards comprehensive analysis (addressing 50-500 genes) of limiting quantities of starting material, such as small brain samples or even single cells.The protocol is most advantageous for parallel analysis of multiple samples (e.g. single cells, dynamic analysis following pharmaceutical, viral or behavioral perturbations). However, the protocol could also serve for the characterization and quality assurance of samples prior to whole-genome studies by microarrays or RNAseq, as well as validation of data obtained from whole-genome studies.
机译:大脑中经验的编码和长期记忆的巩固取决于基因转录。鉴定特定基因在编码经验中的功能是分子神经科学的主要目标之一。此外,已定义的基因与特定行为的功能关联对于理解神经精神疾病的基础具有重要意义。在各种行为操纵之后,已经在小鼠的大脑中观察到了强有力的转录程序的诱导。尽管某些遗传因素会在不同的行为操作下以及在不同的脑核中反复使用,但转录程序对于诱导刺激及其研究的结构总体而言是唯一的 1,2 。该协议描述了针对行为操纵从小鼠脑核进行的强大而全面的转录谱分析。该协议在对可卡因的急性经历后伏伏核中基因表达动态分析的背景下得到了证明。在确定的体内经验之后,解剖目标神经组织;然后进行RNA纯化,逆转录和利用微流控芯片进行多个靶基因的全面qPCR分析。该方案适用于有限数量的起始材料的综合分析(针对50-500个基因),例如小脑样本甚至单个细胞。该协议对于并行分析多个样本(例如单个细胞,随后的动态分析)最为有利药物,病毒或行为干扰)。但是,该协议还可用于通过微阵列或RNAseq进行全基因组研究之前对样品进行表征和质量保证,以及验证从全基因组研究中获得的数据。

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