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Genomic data mining for functional annotation of human long noncoding RNAs

机译:基因组数据挖掘,用于人类长链非编码RNA的功能注释

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Life may have begun in an RNA world, which is supported by increasing evidence of the vital role that RNAs perform in biological systems. In the human genome, most genes actually do not encode proteins; they are noncoding RNA genes. The largest class of noncoding genes is known as long noncoding RNAs (lncRNAs), which are transcripts greater in length than 200 nucleotides, but with no protein-coding capacity. While some lncRNAs have been demonstrated to be key regulators of gene expression and 3D genome organization, most lncRNAs are still uncharacterized. We thus propose several data mining and machine learning approaches for the functional annotation of human lncRNAs by leveraging the vast amount of data from genetic and genomic studies. Recent results from our studies and those of other groups indicate that genomic data mining can give insights into lncRNA functions and provide valuable information for experimental studies of candidate lncRNAs associated with human disease.
机译:RNA世界的生命可能已经开始,越来越多的证据证明RNA在生物系统中起着至关重要的作用。在人类基因组中,大多数基因实际上并不编码蛋白质。它们是非编码RNA基因。最大的一类非编码基因称为长非编码RNA(lncRNA),其长度大于200个核苷酸,但没有蛋白质编码能力。尽管一些lncRNA已被证明是基因表达和3D基因组组织的关键调节因子,但大多数lncRNA仍未鉴定。因此,我们通过利用来自遗传和基因组研究的大量数据,提出了几种用于人类lncRNA功能注释的数据挖掘和机器学习方法。我们和其他研究小组的最新研究结果表明,基因组数据挖掘可以深入了解lncRNA的功能,并为与人类疾病相关的候选lncRNA的实验研究提供有价值的信息。

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