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首页> 外文期刊>Nucleic acids research >Rapid decay of unstable Leishmania mRNAs bearing a conserved retroposon signature 3′-UTR motif is initiated by a site-specific endonucleolytic cleavage without prior deadenylation
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Rapid decay of unstable Leishmania mRNAs bearing a conserved retroposon signature 3′-UTR motif is initiated by a site-specific endonucleolytic cleavage without prior deadenylation

机译:带有保守的逆转录子标记3'-UTR基序的不稳定利什曼原虫mRNA的快速衰变是由位点特异性内切核酸酶裂解引起的,而没有事先的腺苷酸化作用

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摘要

We have previously shown that the Leishmania genome possess two widespread families of extinct retroposons termed Short Interspersed DEgenerated Retroposons (SIDER1/2) that play a role in post-transcriptional regulation. Moreover, we have demonstrated that SIDER2 retroposons promote mRNA degradation. Here we provide new insights into the mechanism by which unstable Leishmania mRNAs harboring a SIDER2 retroposon in their 3′-untranslated region are degraded. We show that, unlike most eukaryotic transcripts, SIDER2-bearing mRNAs do not undergo poly(A) tail shortening prior to rapid turnover, but instead, they are targeted for degradation by a site-specific endonucleolytic cleavage. The main cleavage site was mapped in two randomly selected SIDER2-containing mRNAs in vivo between an AU dinucleotide at the 5′-end of the second 79-nt signature (signature II), which represents the most conserved sequence amongst SIDER2 retroposons. Deletion of signature II abolished endonucleolytic cleavage and deadenylation-independent decay and increased mRNA stability. Interestingly, we show that overexpression of SIDER2 anti-sense RNA can increase sense transcript abundance and stability, and that complementarity to the cleavage region is required for protecting SIDER2-containing transcripts from degradation. These results establish a new paradigm for how unstable mRNAs are degraded in Leishmania and could serve as the basis for a better understanding of mRNA decay pathways in general.
机译:先前我们已经表明,利什曼原虫基因组拥有两个广泛的灭绝逆转录子家族,称为短散布的变性逆转录子(SIDER1 / 2),它们在转录后调控中发挥作用。此外,我们已经证明SIDER2逆转录子能促进mRNA降解。在这里,我们提供了新的见解,从而解释了在3'-非翻译区中携带SIDER2逆转录子的不稳定利什曼原虫mRNA降解的机制。我们表明,与大多数真核转录本不同,携带SIDER2的mRNA在快速更新之前不会经历poly(A)尾部缩短,而是将它们定位为通过位点特异性内切核酸酶裂解。主要的切割位点被定位在体内两个随机选择的含SIDER2的mRNA之间,位于第二个79 nt签名(签名II)的5'末端的AU二核苷酸之间,这代表了SIDER2逆转子中最保守的序列。签名II的删除废除了内切核酸酶裂解和与腺苷酸无关的衰变,并增加了mRNA的稳定性。有趣的是,我们表明SIDER2反义RNA的过表达可以增加有义转录本的丰度和稳定性,并且为了保护含SIDER2的转录本免于降解,需要与切割区域互补。这些结果为不稳定的mRNA在利什曼原虫中如何降解建立了新的范例,并且可以作为一般更好地了解mRNA衰变途径的基础。

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