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Adjustments, extinction, and remains of selenocysteine incorporation machinery in the nematode lineage

机译:线虫谱系中Selenocysteine Incorporation机械的调整,灭绝和遗骸

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Selenocysteine (Sec) is encoded by an UGA codon with the help of a SECIS element present in selenoprotein mRNAs. SECIS-binding protein (SBP2/SCBP-2) mediates Sec insertion, but the roles of its domains and the impact of its deficiency on Sec insertion are not fully understood. We used Caenorhabditis elegans to examine SBP2 function since it possesses a single selenoprotein, thioredoxin reductase-1 (TRXR-1). All SBP2 described so far have an RNA-binding domain (RBD) and a Secincorporation domain (SID). Surprisingly, C. elegans SBP2 lacks SID and consists only of an RBD. An sbp2 deletion mutant strain ablated Sec incorporation demonstrating SBP2 essentiality for Sec incorporation. Further in silico analyses of nematode genomes revealed conservation of SBP2 lacking SID and maintenance of Sec incorporation linked to TRXR-1. Remarkably, parasitic plant nematodes lost the ability to incorporate Sec, but retained SecP43, a gene associated with Sec incorporation. Interestingly, both selenophosphate synthetase (SPS) genes are absent in plant parasitic nematodes, while only Cys-containing SPS2 is present in Sec-incorporating nematodes. Our results indicate that C. elegans and the nematode lineage provide key insights into Sec incorporation and the evolution of Sec utilization trait, selenoproteomes, selenoproteins, and Sec residues. Finally, our study provides evidence of noncanonical translation initiation in C. elegans, not previously known for this well-established animal model.
机译:硒密序列(SEC)由UGA密码子在硒蛋白MRNA中存在的SECI元素的帮助下编码。 SECI结合蛋白(SBP2 / SCBP-2)介导秒插入,但其结构域的作用和其缺陷对SEC插入的影响是不完全理解的。我们使用Caenorhabditis elegans来检查SBP2功能,因为它具有单一的硒蛋白,硫氧化酶还原酶-1(TRXR-1)。到目前为止所描述的所有SBP2都具有RNA结合结构域(RBD)和SECINC综合结构域(SID)。令人惊讶的是,C. Elegans SBP2缺乏SID,只包括RBD。 SBP2缺失突变体菌株消融秒结合,用于证明SEC掺入的SBP2产物质。此外,在线虫基因组的硅分析中,揭示了SBP2的守恒缺乏SID的和维持与TRXR-1相关的秒结合。值得注意的是,寄生植物线虫失去了掺入SEC的能力,但保留了SECP43,该基因与ec掺入相关。有趣的是,在植物寄生线虫中不存在硒磷酸盐合成酶(SPS)基因,同时仅含有Cys的SPS2的SCS2在亚秒内的线虫中存在。我们的结果表明,C.埃贝罗斯和线虫谱系的关键洞察秘书融合和SEC利用特征,硒蛋白,硒蛋白和秒残留物的演变。最后,我们的研究提供了在秀丽隐杆线虫中的非甘露透明的翻译开始的证据,以前没有针对这一成熟的动物模型所知。

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