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内部核糖体进入位点增强反义非编码SINEUP和环状RNA中的反式翻译。

Internal ribosome entry sites enhance translation in trans in antisense non-coding SINEUP and circular RNAs.

作者信息

D'Agostino Sabrina, Tettey-Matey Abraham, Volpe Massimiliano, Pierattini Bianca, D'Agostino Mattia, Smělá Denisa, Ansaloni Federico, Broglia Laura, Lau Pierre, Peruzzo Omar, Braccia Clarissa, Armirotti Andrea, Scarpato Margherita, Damiani Devid, Ros Gloria, Di Carlo Valerio, Maniscalco Federica, Bechara Elias, Tartaglia Gian Gaetano, Carninci Piero, Santoro Claudio, Persichetti Francesca, Pandolfini Luca, Simonetti Angelita, Espinoza Stefano, Zucchelli Silvia, Sanges Remo, Bon Carlotta, Gustincich Stefano

机构信息

Center for Human Technologies, Non-coding RNAs and RNA-based therapeutics, Istituto Italiano di Tecnologia (IIT), Via Enrico Melen 83, Genova 16152, Italy.

Area of Neuroscience, International School for Advanced Studies (SISSA), Trieste, Italy.

出版信息

Nucleic Acids Res. 2025 Aug 11;53(15). doi: 10.1093/nar/gkaf788.

Abstract

Sequences in the 5'-untranslated regions of cellular and viral mRNAs can function as internal ribosome entry sites (IRESs), driving cis-acting translation of the downstream protein-coding open reading frame. Here we demonstrate that RNA sequences with either newly identified or well-characterized IRES activity can also induce trans-acting translation of an independent mRNA species through an antisense sequence. SINEUPs are antisense long non-coding RNAs that enhance the translation of overlapping sense mRNAs in trans by employing two critical domains: the invSINEB2 sequence, which up-regulates translation (effector domain), and an antisense region providing target specificity (binding domain). First, we show that the invSINEB2 from the natural SINEUP AS Uchl1 RNA acts as an IRES when functioning in cis. Next, we establish that known viral and cellular sequences with IRES activity can operate in trans as an effector domain in synthetic SINEUPs. To identify natural IRES-containing non-coding RNAs with transactivity, we found that the non-coding hsa_circ_0 085 533 (circMyc), transcribed from the c-myc locus, enhances protein expression of PX Domain Containing Serine/Threonine Kinase Like (PXK) by promoting mRNA association with polysomes through antisense sequences. These results suggest that SINEUPs and some circular RNAs are trans-acting IRESs, expanding the repertoire of molecular mechanisms to regulate translation.

摘要

细胞和病毒mRNA的5'-非翻译区中的序列可作为内部核糖体进入位点(IRES),驱动下游蛋白质编码开放阅读框的顺式作用翻译。在这里,我们证明,具有新鉴定的或已充分表征的IRES活性的RNA序列也可以通过反义序列诱导独立mRNA物种的反式作用翻译。SINEUP是反义长链非编码RNA,通过利用两个关键结构域在反式中增强重叠正义mRNA的翻译:上调翻译的invSINEB2序列(效应结构域)和提供靶标特异性的反义区域(结合结构域)。首先,我们表明天然SINEUP AS Uchl1 RNA中的invSINEB2在顺式作用时充当IRES。接下来,我们确定具有IRES活性的已知病毒和细胞序列可以作为合成SINEUP中的效应结构域在反式中起作用。为了鉴定具有反式活性的天然含IRES非编码RNA,我们发现从c-myc基因座转录的非编码hsa_circ_0085533(circMyc)通过反义序列促进mRNA与多核糖体的结合,从而增强含丝氨酸/苏氨酸激酶样PX结构域(PXK)的蛋白质表达。这些结果表明,SINEUP和一些环状RNA是反式作用的IRES,扩展了调节翻译的分子机制库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aedf/12359042/386099fe2132/gkaf788figgra1.jpg

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