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MYCNOS functions as an antisense RNA regulating MYCN

机译:MYCNOS作为调节MYCN的反义RNA

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摘要

Amplification or overexpression of neuronal MYC (MYCN) is associated with poor prognosis of human neuroblastoma. Three isoforms of the MYCN protein have been described as well as a protein encoded by an antisense transcript (MYCNOS) that originates from the opposite strand at the MYCN locus. Recent findings suggest that some antisense long non-coding RNAs (lncRNAs) can play a role in epigenetically regulating gene expression. Here we report that MYCNOS transcripts function as a modulator of the MYCN locus, affecting MYCN promoter usage and recruiting various proteins, including the Ras GTPase-activating protein-binding protein G3BP1, to the upstream MYCN promoter. Overexpression of MYCNOS results in a reduction of upstream MYCN promoter usage and increased MYCN expression, suggesting that the protein-coding MYCNOS also functions as a regulator of MYCN ultimately controlling MYCN transcriptional variants. The observations presented here demonstrate that protein-coding transcripts can regulate gene transcription and can tether regulatory proteins to target loci.
机译:神经元MYC(MYCN)的扩增或过表达与人类神经母细胞瘤的不良预后有关。已经描述了MYCN蛋白的三种同工型以及由反义转录物(MYCNOS)编码的蛋白,所述反义转录物源自MYCN基因座的相反链。最近的发现表明,一些反义长非编码RNA(lncRNA)可以在表观遗传调控基因表达中发挥作用。在这里我们报告MYCNOS转录本作为MYCN基因座的调节剂,影响MYCN启动子的使用并将包括Ras GTPase激活蛋白结合蛋白G3BP1在内的各种蛋白质募集到上游MYCN启动子。 MYCNOS的过表达导致上游MYCN启动子使用的减少和MYCN表达的增加,表明编码MYCNOS的蛋白质还充当MYCN的调节剂,最终控制MYCN转录变体。此处提出的观察结果表明,编码蛋白质的转录本可以调节基因转录,并​​且可以将调节蛋白束缚到目标基因座。

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