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Riboswitch Control of Gene Expression in Plants by Splicing and Alternative 3′ End Processing of mRNAs

机译:剪接和mRNA的3端替代加工控制植物基因表达的核糖开关

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摘要

The most widespread riboswitch class, found in organisms from all three domains of life, is responsive to the vitamin B1 derivative thiamin pyrophosphate (TPP). We have established that a TPP-sensing riboswitch is present in the 3′ untranslated region (UTR) of the thiamin biosynthetic gene THIC of all plant species examined. The THIC TPP riboswitch controls the formation of transcripts with alternative 3′ UTR lengths, which affect mRNA accumulation and protein production. We demonstrate that riboswitch-mediated regulation of alternative 3′ end processing is critical for TPP-dependent feedback control of THIC expression. Our data reveal a mechanism whereby metabolite-dependent alteration of RNA folding controls splicing and alternative 3′ end processing of mRNAs. These findings highlight the importance of metabolite sensing by riboswitches in plants and further reveal the significance of alternative 3′ end processing as a mechanism of gene control in eukaryotes.
机译:在生命的所有三个领域的生物中发现的最广泛的核糖开关类别是对维生素B1衍生物硫胺焦磷酸盐(TPP)的反应。我们已经确定,TPP感应核糖开关存在于所检查的所有植物物种的硫胺素生物合成基因THIC的3'非翻译区(UTR)中。 THIC TPP核糖开关控制具有替代3'UTR长度的转录物的形成,这会影响mRNA的积累和蛋白质的产生。我们证明了核糖开关介导的替代3'末端加工的调节对于THIC表达的TPP依赖性反馈控制至关重要。我们的数据揭示了一种机制,其中RNA折叠的代谢物依赖性改变可控制mRNA的剪接和替代3'末端加工。这些发现突出了植物中通过核糖开关进行代谢物传感的重要性,并进一步揭示了替代3'末端加工作为真核生物基因控制机制的重要性。

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