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Combining Small-Volume Metabolomic and Transcriptomic Approaches for Assessing Brain Chemistry

机译:结合小剂量代谢组学和转录组学方法评估脑化学

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The integration of disparate data types provides a more complete picture of complex biological systems. Here we combine small-volume metabolomic and transcriptomic platforms to determine subtle chemical changes and to link metabolites and genes to biochemical pathways. Capillary electrophoresis-mass spectrometry (CE-MS) and whole-genome gene expression arrays, aided by integrative pathway analysis, were utilized to survey metabolomic/transcriptomic hippocampal neurochemistry. We measured changes in individual hippocampi from the mast cell mutant mouse strain, C57BL/6 Kit~(W-sh/W-sh). These mice have a naturally occurring mutation in the white spotting locus that causes reduced c-Kit receptor expression and an inability of mast cells to differentiate from their hematopoietic progenitors. Compared with their littermates, the mast cell-deficient mice have profound deficits in spatial learning, memory, and neurogenesis. A total of 18 distinct metabolites were identified in the hippocampus that discriminated between the C57BL/6 Kit~(W-sh/W-sh) and control mice. The combined analysis of metabolite and gene expression changes revealed a number of altered pathways. Importantly, results from both platforms indicated that multiple pathways are impacted, including amino acid metabolism, increasing the confidence in each approach. Because the CE-MS and expression profiling are both amenable to small-volume analysis, this integrated analysis is applicable to a range of volume-limited biological systems.
机译:不同数据类型的集成提供了复杂生物系统的更完整描述。在这里,我们结合了小批量的代谢组学和转录组学平台,以确定微妙的化学变化,并将代谢物和基因与生化途径联系起来。毛细管电泳质谱(CE-MS)和全基因组基因表达阵列,在整合途径分析的帮助下,用于研究代谢组学/转录组学海马神经化学。我们测量了肥大细胞突变小鼠品系C57BL / 6 Kit〜(W-sh / W-sh)在单个海马中的变化。这些小鼠在白色斑点基因座中具有自然发生的突变,导致c-Kit受体表达降低,肥大细胞无法与造血祖细胞区分开。与它们的同窝仔相比,肥大细胞缺陷型小鼠在空间学习,记忆和神经发生方面有严重的缺陷。在海马中总共鉴定出18种不同的代谢物,可区分C57BL / 6 Kit〜(W-sh / W-sh)和对照小鼠。代谢物和基因表达变化的综合分析揭示了许多改变的途径。重要的是,两个平台的结果均表明,多种途径均受到影响,包括氨基酸代谢,从而增加了每种方法的可信度。由于CE-MS和表达谱均适用于小体积分析,因此该集成分析适用于一系列体积受限的生物系统。

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