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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Alternative polyadenylation and differential expression of Shank mRNAs in the synaptic neuropil
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Alternative polyadenylation and differential expression of Shank mRNAs in the synaptic neuropil

机译:突触神经纤维中Shank mRNA的选择性聚腺苷酸化和差异表达

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The stability and dynamics of synapses rely on tight regulation of the synaptic proteome. Shank proteins, encoded by the three genes Shank1, Shank2 and Shank3 are scaffold molecules in the postsynaptic density of excitatory neurons that contribute to activity-dependent neuronal signalling. Mutations in the Shank genes are associated with neurological diseases. Using stateof- the-art technologies, we investigated the levels of expression of the Shank family messenger RNAs (mRNAs) within the synaptic neuropil of the rat hippocampus. We detected all three Shank transcripts in the neuropil of CA1 pyramidal neurons. We found Shank1 to be the most abundantly expressed among the three Shank mRNA homologues. We also examined the turnover of Shank mRNAs and predict the half-lives of Shank1, Shank2 and Shank3 mRNAs to be 18–28 h. Using 3'-end sequencing, we identified novel 3' ends for the Shank1 and Shank2 3' untranslated regions (3' UTRs) that may contribute to the diversity of alternative polyadenylation (APA) for the Shank transcripts. Our findings consolidate the view that the Shank molecules play a central role at the postsynaptic density. This study may shed light on synaptopathologies associated with disruption of local protein synthesis, perhaps linked to mutations in mRNA 3' UTRs or inappropriate 3' end processing.
机译:突触的稳定性和动力学依赖于突触蛋白质组的严格调节。由三个基因Shank1,Shank2和Shank3编码的Shank蛋白是兴奋性神经元的突触后密度中的骨架分子,有助于活动依赖性神经元信号传导。 Shank基因的突变与神经系统疾病有关。使用最先进的技术,我们研究了大鼠海马突触神经纤维中Shank家族信使RNA(mRNA)的表达水平。我们在CA1锥体神经元的神经纤维中检测到所有三个Shank转录本。我们发现Shank1在三个Shank mRNA同源物中表达最丰富。我们还检查了Shank mRNA的周转率,并预测Shank1,Shank2和Shank3 mRNA的半衰期为18-28 h。使用3'端测序,我们确定了Shank1和Shank2 3'非翻译区(3'UTR)的新型3'端,这可能有助于Shank转录本的替代多腺苷酸化(APA)的多样性。我们的发现巩固了Shank分子在突触后密度中起核心作用的观点。这项研究可能会揭示与局部蛋白质合成中断相关的突触病理学,可能与mRNA 3'UTR的突变或不合适的3'末端加工有关。

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