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Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding

机译:DEAH / RHA Helicase PRP43活化和ATP基绑定之间的功能性联系

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摘要

The DEAH box helicase Prp43 is a bifunctional enzyme from the DEAH/RHA helicase family required both for the maturation of ribosomes and for lariat intron release during splicing. It interacts with G-patch domain containing proteins which activate the enzymatic activity of Prp43 in vitro by an unknown mechanism. In this work, we show that the activation by G-patch domains is linked to the unique nucleotide binding mode of this helicase family. The base of the ATP molecule is stacked between two residues, R159 of the RecA1 domain (R-motif) and F357 of the RecA2 domain (F-motif). Using Prp43 F357A mutants or pyrimidine nucleotides, we show that the lack of stacking of the nucleotide base to the F-motif decouples the NTPase and helicase activities of Prp43. In contrast the R159A mutant (R-motif) showed reduced ATPase and helicase activities. We show that the Prp43 R-motif mutant induces the same phenotype as the absence of the G-patch protein Gno1, strongly suggesting that the processing defects observed in the absence of Gno1 result from a failure to activate the Prp43 helicase. Overall we propose that the stacking between the R-and F-motifs and the nucleotide base is important for the activity and regulation of this helicase family.
机译:DEAH箱式螺旋酶PRP43是来自DEA / RHA Helicase系列的双官能酶,需要用于核糖体的成熟和Lariat Intron释放期间。它与含有蛋白质的G型贴剂结构域相互作用,该蛋白质通过未知机制在体外激活PRP43的酶活性。在这项工作中,我们表明G型域域的激活与该螺旋酶系列的独特核苷酸结合模式相关联。 ATP分子的碱基堆叠在ReCa2结构域(F-MOTIF)的RECA1结构域(R-MOTIF)和F357的两个残基。使用PRP43 F357A突变体或嘧啶核苷酸,我们表明缺乏将核苷酸碱堆叠到F-MOTIF的NTP酶和Helicase活性的PRP43。相反,R159A突变体(R-MOTIF)显示出降低的ATP酶和螺旋酶活性。我们表明,Prp43 R-基序突变体诱导相同的表型为缺乏的G-补丁蛋白Gno1的,强烈暗示在没有Gno1结果观察到从故障激活Prp43解旋酶的加工缺陷。总的来说,我们提出r-ut和f-motifs和核苷酸基底之间的堆叠对于该螺旋酶家族的活性和调节是重要的。

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  • 来源
    《Nucleic Acids Research》 |2017年第3期|共14页
  • 作者单位

    Univ Paris 05 Sorbonne Paris Cite Fac Pharm Lab Cristallog &

    RMN Biol UMR CNRS 8015 F-75006 Paris France;

    Univ Toulouse CNRS Ctr Biol Integrat Lab Biol Mol Eucaryote UPS F-31000 Toulouse France;

    Univ Paris 05 Sorbonne Paris Cite Fac Pharm Lab Cristallog &

    RMN Biol UMR CNRS 8015 F-75006 Paris France;

    Univ Paris 05 Sorbonne Paris Cite Fac Pharm Lab Cristallog &

    RMN Biol UMR CNRS 8015 F-75006 Paris France;

    Univ Paris 05 Sorbonne Paris Cite Fac Pharm Lab Cristallog &

    RMN Biol UMR CNRS 8015 F-75006 Paris France;

    Univ Paris 05 Sorbonne Paris Cite Fac Pharm Lab Cristallog &

    RMN Biol UMR CNRS 8015 F-75006 Paris France;

    Univ Toulouse CNRS Ctr Biol Integrat Lab Biol Mol Eucaryote UPS F-31000 Toulouse France;

    Univ Toulouse CNRS Ctr Biol Integrat Lab Biol Mol Eucaryote UPS F-31000 Toulouse France;

    Univ Toulouse CNRS Ctr Biol Integrat Lab Biol Mol Eucaryote UPS F-31000 Toulouse France;

    Univ Toulouse CNRS Ctr Biol Integrat Lab Biol Mol Eucaryote UPS F-31000 Toulouse France;

    Univ Paris 05 Sorbonne Paris Cite Fac Pharm Lab Cristallog &

    RMN Biol UMR CNRS 8015 F-75006 Paris France;

    Univ Paris 05 Sorbonne Paris Cite Fac Pharm Lab Cristallog &

    RMN Biol UMR CNRS 8015 F-75006 Paris France;

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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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