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Human La binds mRNAs through contacts to the poly(A) tail

机译:人1a通过触点与聚(a)尾部的触点绑定MRNA

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摘要

In addition to a role in the processing of nascent RNA polymerase III transcripts, La proteins are also associated with promoting cap-independent translation from the internal ribosome entry sites of numerous cellular and viral coding RNAs. La binding to RNA polymerase III transcripts via their common UUU3'OH motif is well characterized, but the mechanism of La binding to coding RNAs is poorly understood. Using electromotility shift assays and cross-linking immunoprecipitation, we show that in addition to a sequence specific UUU-3'OH binding mode, human La exhibits a sequence specific and length dependent poly(A) binding mode. We demonstrate that this poly(A) binding mode uses the canonical nucleic acid interaction winged helix face of the eponymous La motif, previously shown to be vacant during uridylate binding. We also show that cytoplasmic, but not nuclear La, engages poly(A) RNA in human cells, that La entry into polysomes utilizes the poly(A) binding mode, and that La promotion of translation from the cyclin D1 internal ribosome entry site occurs in competition with cytoplasmic poly(A) binding protein (PABP). Our data are consistent with human La functioning in translation through contacts to the poly(A) tail.
机译:除了在新生RNA聚合酶III转录物的处理中的作用之外,LA蛋白还与促进无数细胞和病毒编码RNA的内部核糖体入口位点促进覆盖无关的翻译。通过其普通的UUU3'OH基序结合RNA聚合酶III转录物的结合很好,但是对编码RNA的La结合的机制很差。使用电动血液移位测定和交联免疫沉淀,除了序列特异性UUU-3'OH结合模式之外,人1a除了序列特异性和长度依赖性聚(A)结合模式。我们证明,该多(a)结合模式使用先前所示在脲基酯结合期间的典型核酸相互作用的翅膀螺旋面。我们还表明,细胞质,但不是核洛杉矶,在人体细胞中接合聚(a)RNA,即La进入多肌质使用聚(a)结合模式,并且从细胞周期蛋白d1内部核糖体进入部位的La促进翻译在竞争中与细胞质聚(A)结合蛋白(PABP)。我们的数据与通过与Poly(A)尾部的触点的翻译中的人La功能一致。

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  • 来源
    《Nucleic Acids Research》 |2018年第8期|共13页
  • 作者单位

    York Univ Dept Biol 4700 Keele St Life Sci Bldg 327E Toronto ON M3J 1P3 Canada;

    York Univ Dept Biol 4700 Keele St Life Sci Bldg 327E Toronto ON M3J 1P3 Canada;

    York Univ Dept Biol 4700 Keele St Life Sci Bldg 327E Toronto ON M3J 1P3 Canada;

    York Univ Dept Biol 4700 Keele St Life Sci Bldg 327E Toronto ON M3J 1P3 Canada;

    York Univ Dept Biol 4700 Keele St Life Sci Bldg 327E Toronto ON M3J 1P3 Canada;

    York Univ Dept Biol 4700 Keele St Life Sci Bldg 327E Toronto ON M3J 1P3 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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