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Diverse splicing mechanisms fuse the evolutionarily conserved bicistronic MOCS1A and MOCS1B open reading frames.

机译:多种剪接机制融合了进化保守的双顺反子MOCS1A和MOCS1B开放阅读框。

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摘要

Molybdenum is an essential cofactor in many enzymes, but must first be complexed by molybdopterin, whose synthesis requires four enzymatic activities. The first two enzymes of this pathway are encoded by the MOCS1 locus in humans. We describe here a remarkably well-conserved novel mRNA splicing phenomenon that produces both an apparently bicistronic MOCS1AM-OCS1B transcript, as well as a distinct class of monocistronic transcript. The latter are created by a variety of splicing mechanisms (alternative splice donors, alternative splice acceptors, and exon-skipping) to bypass the normal termination nonsense codon of MOCS1A resulting in fusion of the MOCS1A and MOCS1B open reading frames. Therefore, these "no-nonsense" transcripts encode a single bifunctional protein embodying both MOCS1A and MOCS1B activities. This coexpression profile was observed in vertebrates (human, mouse, cow, rabbit, opossum, and chicken) and invertebrates (fruit fly and nematode) spanning at least 700 million years of evolution. Our phylogenetic data also provide evidence that the bicistronic form of MOCS1 mRNA is likely to only produce MOCS1A protein and, combined with Northern analyses, suggests that MOCS1B is translated only as a fusion with MOCS1A. Taken together, the data presented here demonstrate a very highly conserved and physiologically relevant dynamic splicing scheme that profoundly influences the protein-coding potential of the MOCS1 locus.
机译:钼是许多酶中必不可少的辅助因子,但首先必须与钼蝶呤复合,钼蝶呤的合成需要四种酶促活性。该途径的前两种酶是由人的MOCS1基因座编码的。我们在这里描述了一个非常保守的新型mRNA剪接现象,该现象既产生了明显的双顺反子MOCS1AM-OCS1B转录本,又产生了一类独特的单顺反子转录本。后者是由多种剪接机制(替代剪接供体,替代剪接受体和外显子跳跃)创建的,以绕过MOCS1A的正常终止无义密码子,从而导致MOCS1A和MOCS1B开放阅读框融合。因此,这些“非废话”的成绩单编码体现MOCS1A和MOCS1B活动的单一双功能蛋白质。这种共表达模式在脊椎动物(人类,小鼠,牛,兔子,负鼠和鸡)和无脊椎动物(果蝇和线虫)中经历了至少7亿年的进化。我们的系统发育数据也提供了证据,表明MOCS1 mRNA的双顺反子形式可能仅产生MOCS1A蛋白,并且与Northern分析相结合,表明MOCS1B仅作为与MOCS1A的融合体翻译。综上所述,此处提供的数据证明了一种高度保守且与生理相关的动态剪接方案,该方案深刻影响了MOCS1基因座的蛋白质编码潜力。

著录项

  • 期刊名称 RNA
  • 作者

    T A Gray; R D Nicholls;

  • 作者单位
  • 年(卷),期 2000(6),7
  • 年度 2000
  • 页码 928–936
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类 分子生物学;
  • 关键词

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