In silico motif analysis suggests an interplay of transcriptional and translational control in mTOR response

I. Eliseeva, I. Vorontsov, Kirill Babeyev, S. Buyanova, Maria Sysoeva, F. Kondrashov, I. Kulakovskiy
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引用次数: 11

Abstract

The short 5'-terminal oligopyrimidine tract (TOP) of 5' UTRs is a well-known regulatory sequence motif of mRNAs that are subject to growth-dependent translation. Specifically, translation of TOP mRNAs is regulated by the mTOR signaling pathway that is involved in cell proliferation, cancer development and aging. High throughput data permit detailed study of specific features of the mRNA TOP motif and its DNA origins at transcription start sites (TSS). Recently, ribosome profiling was used to identify mRNA targets of the mTOR pathway in PC3 cells. A novel pyrimidine-rich translational element (PRTE) was reported to play a key role without positional preferences within the 5' UTRs, unlike 5' TOP, which are strictly located at the 5' ends. In this study, we couple recently reported ribosome profiling data on the mTOR mRNA targets with the annotation of TSS obtained by HeliScopeCAGE. We confirm the canonical TOP and strong positional preferences of respective oligopyrimidine tracts (OP) straddling the experimentally validated TSS regions at the DNA level. Such OP localization ensures that transcription from OP segments creates the 5'-terminal TOP in the corresponding mRNAs. We demonstrate that OP are not overrepresented in downstream regions of 5' UTRs of mTOR targets. Finally, we highlight several mTOR target genes with broad and multimodal TSS spanning dozens of nucleotides that are only partically covered with an OP. Therefore, in such cases only a fraction of all produced mRNAs carry a TOP regulatory motif and, thus, respond to mTOR via TOP mechanism. We hypothesize that the interplay between transcription and translation may play a crucial role in the regulation of the mTOR response.
硅基序分析表明mTOR反应中转录和翻译控制的相互作用
5' UTRs的短5'末端寡聚嘧啶链(TOP)是众所周知的受生长依赖性翻译影响的mrna的调控序列基序。具体来说,TOP mrna的翻译受mTOR信号通路的调控,mTOR信号通路参与细胞增殖、癌症发展和衰老。高通量数据允许详细研究mRNA TOP基序的特定特征及其转录起始位点(TSS)的DNA起源。最近,核糖体分析被用于鉴定PC3细胞中mTOR通路的mRNA靶点。据报道,一种新的富含嘧啶的翻译元件(PRTE)在5' utr中发挥关键作用,而不是像5' TOP那样严格位于5'端。在这项研究中,我们将最近报道的mTOR mRNA靶点的核糖体分析数据与HeliScopeCAGE获得的TSS注释结合起来。我们在DNA水平上证实了各自的低聚嘧啶束(OP)跨越实验验证的TSS区域的典型TOP和强烈的位置偏好。这种OP定位确保了OP片段的转录在相应的mrna中产生5'端TOP。我们证明,在mTOR靶标的5' utr下游区域,OP并没有过多地代表。最后,我们强调了几个具有广泛和多模态TSS的mTOR靶基因,这些基因跨越数十个核苷酸,仅部分被op覆盖。因此,在这种情况下,只有一小部分产生的mrna携带TOP调控基序,因此,通过TOP机制对mTOR作出反应。我们假设转录和翻译之间的相互作用可能在mTOR反应的调节中起关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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