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Neuronal activity regulates alternative exon usage

机译:神经元活动调节替代外显子使用

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Neuronal activity-regulated gene transcription underlies plasticity-dependent changes in the molecular composition and structure of neurons. A large number of genes regulated by different neuronal plasticity inducing pathways have been identified, but altered gene expression levels represent only part of the complexity of the activity-regulated transcriptional program. Alternative splicing, the differential inclusion and exclusion of exonic sequence in mRNA, is an additional mechanism that is thought to define the activity-dependent transcriptome. Here, we present a genome wide microarray-based survey to identify exons with increased expression levels at 1, 4 or 8?h following neuronal activity in the murine hippocampus provoked by generalized seizures. We used two different bioinformatics approaches to identify alternative activity-induced exon usage and to predict alternative splicing, ANOSVA (ANalysis Of Splicing VAriation) which we here adjusted to accommodate data from different time points and FIRMA (Finding Isoforms using Robust Multichip Analysis). RNA sequencing, in situ hybridization and reverse transcription PCR validate selected activity-dependent splicing events of previously described and so far undescribed activity-regulated transcripts, including Homer1a, Homer1d, Ania3, Errfi1, Inhba, Dclk1, Rcan1, Cda, Tpm1 and Krt75. Taken together, our survey significantly adds to the comprehensive understanding of the complex activity-dependent neuronal transcriptomic signature. In addition, we provide data sets that will serve as rich resources for future comparative expression analyses.
机译:神经元活性调节的基因转录是依赖于神经元分子组合物和结构的可塑性变化。已经鉴定了由不同神经元塑性诱导途径调节的大量基因,但是改变的基因表达水平仅代表活性调节的转录程序的复杂性的一部分。替代剪接,MRNA中的差分夹杂物和排除偏振序列,是据认为定义活性依赖性转录组的另一种机制。在这里,我们提出了基于基于微阵列的基因组的调查,以鉴定在由广义癫痫发作的鼠海马中的神经元活性下,在1,4或8μm的表达水平增加,以鉴定出显子水平。我们使用了两种不同的生物信息学方法来识别替代活动引起的外显子使用,并预测我们在此调整以容纳来自不同时间点和FIRMA的数据的替代剪接,ANOSV(分析拼接变化)(使用鲁棒多芯片分析找到同种型)。 RNA测序,原位杂交和逆转录PCR验证先前描述的选定的活性依赖性剪接事件,迄今为止未描述的活性调节的转录物,包括Homer1a,Homer1d,Ania3,Errfi1,Inhba,DCLK1,RCAN1,CDA,TPM1和KRT75。在一起,我们的调查显着增加了对复杂的活动依赖性神经元转录组签名的综合了解。此外,我们提供将作为未来比较表达分析的丰富资源的数据集。

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