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Genomic and Transcriptional Co-Localization of Protein-Coding and Long Non-Coding RNA Pairs in the Developing Brain

机译:基因组和转录共定位的发展中国家的蛋白质编码和长非编码RNA对。

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摘要

Besides protein-coding mRNAs, eukaryotic transcriptomes include many long non-protein-coding RNAs (ncRNAs) of unknown function that are transcribed away from protein-coding loci. Here, we have identified 659 intergenic long ncRNAs whose genomic sequences individually exhibit evolutionary constraint, a hallmark of functionality. Of this set, those expressed in the brain are more frequently conserved and are significantly enriched with predicted RNA secondary structures. Furthermore, brain-expressed long ncRNAs are preferentially located adjacent to protein-coding genes that are (1) also expressed in the brain and (2) involved in transcriptional regulation or in nervous system development. This led us to the hypothesis that spatiotemporal co-expression of ncRNAs and nearby protein-coding genes represents a general phenomenon, a prediction that was confirmed subsequently by in situ hybridisation in developing and adult mouse brain. We provide the full set of constrained long ncRNAs as an important experimental resource and present, for the first time, substantive and predictive criteria for prioritising long ncRNA and mRNA transcript pairs when investigating their biological functions and contributions to development and disease.
机译:除了蛋白质编码的mRNA,真核转录组还包括许多功能未知的长的非蛋白质编码的RNA(ncRNA),这些RNA从蛋白质编码的基因座转录而来。在这里,我们已经确定了659个基因间长的ncRNA,其基因组序列分别表现出进化限制,这是功能的标志。在这组细胞中,在大脑中表达的那些更为保守,并且富含预测的RNA二级结构。此外,大脑表达的长ncRNA优先位于蛋白质编码基因附近,这些蛋白质编码基因(1)在大脑中也表达,并且(2)参与转录调节或神经系统发育。这导致我们得出这样的假设:ncRNA和附近蛋白质编码基因的时空共表达代表了一种普遍现象,这一预测随后被发育中和成年小鼠大脑中的原位杂交所证实。我们提供全套受约束的长ncRNA,作为重要的实验资源,并首次提出实质性和预测性标准,以便在研究长ncRNA和mRNA转录本对时,优先研究其生物学功能以及对发育和疾病的贡献。

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