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首页> 外文期刊>FEBS Letters >A naturally occurring non‐coding fusion transcript derived from scorpion venom gland: implication for the regulation of scorpion toxin gene expression
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A naturally occurring non‐coding fusion transcript derived from scorpion venom gland: implication for the regulation of scorpion toxin gene expression

机译:来自蝎毒腺的天然非编码融合转录本:对调节蝎毒素基因表达的意义

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>Scorpion venom glands synthesize and secrete a great number of low molecular mass toxic peptides for prey and defense. Many cDNAs and genomic genes encoding these toxins have been isolated and sequenced. However, their expression regulation mechanism is not yet known at present. During screening of a cDNA library prepared from venom glands of the scorpion Buthus martensii Karsch, we isolated a natural fusion cDNA composed of the 5′-untranslated region (UTR) and upstream coding sequence of a long-chain toxin transcript and the downstream coding sequence and 3′-UTR of a short-chain toxin transcript. The junction site is just the overlapping region of 11 nucleotides (GGCAAGGAAAT) between the two wild transcripts, and thus leads to the formation of an early stop codon, which will cause premature translation. Based on the above observations, combined with the genomic data, we proposed a characteristic regulation mechanism of scorpion toxin genes, in which trans-splicing and nonsense mediated mRNA decay are involved.
机译:>蝎子毒腺合成并分泌大量低分子量有毒肽,用于捕食和防御。已经分离并测序了许多编码这些毒素的cDNA和基因组基因。但是,它们的表达调节机制目前尚不知道。在筛选从蝎形蝎(Buthus martensii) Karsch的毒腺制备的cDNA文库时,我们分离了由5'-非翻译区(UTR)和长链上游编码序列组成的天然融合cDNA毒素转录本以及下游编码序列和短链毒素转录本的3'-UTR。连接位点只是两个野生转录本之间11个核苷酸(GGCAAGGAAAT)的重叠区域,因此导致形成早期终止密码子,这将导致过早翻译。基于以上观察,结合基因组数据,提出了蝎毒素基因的特征调控机制,其中涉及反式剪接和无义介导的mRNA衰减。

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