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Genomic Convergence Analysis of Schizophrenia: mRNA Sequencing Reveals Altered Synaptic Vesicular Transport in Post-Mortem Cerebellum

机译:精神分裂症的基因组收敛性分析:mRNA测序揭示了早春后小脑中改变的突触囊泡运输。

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摘要

Schizophrenia (SCZ) is a common, disabling mental illness with high heritability but complex, poorly understood genetic etiology. As the first phase of a genomic convergence analysis of SCZ, we generated 16.7 billion nucleotides of short read, shotgun sequences of cDNA from post-mortem cerebellar cortices of 14 patients and six, matched controls. A rigorous analysis pipeline was developed for analysis of digital gene expression studies. Sequences aligned to approximately 33,200 transcripts in each sample, with average coverage of 450 reads per gene. Following adjustments for confounding clinical, sample and experimental sources of variation, 215 genes differed significantly in expression between cases and controls. Golgi apparatus, vesicular transport, membrane association, Zinc binding and regulation of transcription were over-represented among differentially expressed genes. Twenty three genes with altered expression and involvement in presynaptic vesicular transport, Golgi function and GABAergic neurotransmission define a unifying molecular hypothesis for dysfunction in cerebellar cortex in SCZ.
机译:精神分裂症(SCZ)是一种常见的致残性精神疾病,具有较高的遗传性,但遗传病因却知之甚少。作为SCZ基因组融合分析的第一阶段,我们从14位患者和6个匹配对照的死后小脑皮质中生成了167亿个核苷酸的cDNA短读shot弹枪序列。开发了严格的分析流程来分析数字基因表达研究。每个样品中的序列与大约33,200个转录物对齐,每个基因平均覆盖450个读数。在对混杂的临床,样本和实验变异来源进行调整之后,病例和对照之间的215个基因表达差异显着。高尔基体,囊泡运输,膜缔合,锌结合和转录的调控是差异表达基因中的过度代表。二十三个表达改变且参与突触前囊泡运输,高尔基功能和GABA能神经传递的基因定义了SCZ小脑皮质功能障碍的统一分子假说。

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