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The Oncogenic Relevance of miR-17-92 Cluster and Its Paralogous miR-106b-25 and miR-106a-363 Clusters in Brain Tumors

机译:miR-17-92簇及其旁系miR-106b-25和miR-106a-363​​簇在脑肿瘤中的致癌相关性

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摘要

The fundamental function of ribonucleic acids is to transfer genetic information from DNA to protein during translation process, however, this is not the only way connecting active RNA sequences with essential biological processes. Up until now, many RNA subclasses of different size, structure, and biological function were identified. Among them, there are non-coding single-stranded microRNAs (miRNAs). This subclass comprises RNAs of 19–25 nucleotides in length that modulate the activity of well-defined coding RNAs and play a crucial role in many physiological and pathological processes. miRNA genes are located both in exons, introns, and also within non-translated regions. Several miRNAs that are transcribed from the adjacent miRNA genes are called cluster. One of the largest ones is miR-17-92 cluster known as OncomiR-1 due to its strong link to oncogenesis. Six miRNAs from the OncomiR-1 have been shown to play important roles in various physiological cellular processes but also through inhibition of cell death in many cancer-relevant processes. Due to the origin and similarity of the sequence, miR-17-92 cluster and paralogs, miR-106b-25 and miR-106a-363 clusters were defined. Here we discuss the oncogenic function of those miRNA subgroups found in many types of cancers, including brain tumors.
机译:核糖核酸的基本功能是在翻译过程中将遗传信息从DNA转移到蛋白质,但是,这不是将活性RNA序列与必不可少的生物学过程相连接的唯一途径。到目前为止,已鉴定出许多大小,结构和生物学功能不同的RNA亚类。其中,有非编码单链microRNA(miRNA)。该亚类包含长度为19-25个核苷酸的RNA,这些RNA调节明确定义的编码RNA的活性,并在许多生理和病理过程中发挥关键作用。 miRNA基因既位于外显子,内含子中,也位于非翻译区域中。从相邻miRNA基因转录的几种miRNA称为簇。最大的分子之一是miR-17-92簇,称为OncomiR-1,这是因为它与肿瘤发生密切相关。已显示来自OncomiR-1的6个miRNA在各种生理细胞过程中起着重要作用,而且还通过在许多与癌症相关的过程中抑制细胞死亡而发挥重要作用。由于序列的起源和相似性,定义了miR-17-92簇和旁系同源物miR-106b-25和miR-106a-363​​簇。在这里,我们讨论了在许多类型的癌症(包括脑肿瘤)中发现的那些miRNA亚组的致癌功能。

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