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人类海马体内的表达谱分析:CA1和CA3锥体神经元的比较。

Expression profile analysis within the human hippocampus: comparison of CA1 and CA3 pyramidal neurons.

作者信息

Ginsberg Stephen D, Che Shaoli

机构信息

Center for Dementia Research, Nathan Kline Institute, Department of Psychiatry, New York University School of Medicine, Orangeburg, New York 10962, USA.

出版信息

J Comp Neurol. 2005 Jun 20;487(1):107-18. doi: 10.1002/cne.20535.

Abstract

The hippocampus contains several distinct cell types that are interconnected by a well-characterized series of synaptic circuits. To evaluate molecular and cellular signatures of individual cell types within the normal adult human hippocampal formation, expression profile analysis was performed on individual CA1 and CA3 pyramidal neurons using a novel single cell RNA amplification methodology coupled with custom-designed cDNA array analysis. Populations of CA1 and CA3 neurons were also compared with regional dissections of the hippocampus from the same tissue sections. Molecular fingerprint comparison of cresyl violet-stained CA1 and CA3 pyramidal neurons microaspirated from the hippocampus of normal control subjects indicated significant differences in relative expression levels for approximately 16% (20 of 125) genes evaluated on the custom-designed cDNA array platform. Significant differences were observed for several transcripts relevant to the structure and function of hippocampal neurons, including specific glutamate receptors, gamma-aminobutyric acid (GABA) A receptors, cytoskeletal elements, dopamine receptors, and immediate-early genes. Compared with the regional assessment of gene expression, both CA1 and CA3 neurons displayed a relative enrichment of classes of transcripts that included glutamate receptors, transporters, and interacting proteins, GABA receptors and transporters, synaptic-related markers, and catecholamine receptors and transporters. In contrast, the regional hippocampal dissection had an increased level of gene expression for cytoskeletal elements as well as glial-associated markers. Expression profile analysis illustrates the importance of evaluating individual cellular populations within a functional circuit and may help define elements that confer unique properties to individual populations of hippocampal neurons under normal and diseased conditions.

摘要

海马体包含几种不同的细胞类型,它们通过一系列特征明确的突触回路相互连接。为了评估正常成年人类海马结构中单个细胞类型的分子和细胞特征,使用一种新型单细胞RNA扩增方法结合定制设计的cDNA阵列分析,对单个CA1和CA3锥体神经元进行了表达谱分析。还将CA1和CA3神经元群体与来自相同组织切片的海马体区域解剖样本进行了比较。对从正常对照受试者海马体中微量吸取的经甲酚紫染色的CA1和CA3锥体神经元进行分子指纹比较,结果表明,在定制设计的cDNA阵列平台上评估的约16%(125个中的20个)基因的相对表达水平存在显著差异。在与海马神经元结构和功能相关的几种转录本中观察到显著差异,包括特定的谷氨酸受体、γ-氨基丁酸(GABA)A受体、细胞骨架成分、多巴胺受体和即早基因。与基因表达的区域评估相比,CA1和CA3神经元均显示出转录本类别的相对富集,这些转录本类别包括谷氨酸受体、转运体和相互作用蛋白、GABA受体和转运体、突触相关标记物以及儿茶酚胺受体和转运体。相比之下,海马体区域解剖样本中细胞骨架成分以及胶质细胞相关标记物的基因表达水平有所增加。表达谱分析说明了评估功能回路中单个细胞群体的重要性,并可能有助于确定在正常和患病条件下赋予海马神经元单个群体独特特性的因素。

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