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A newly identified duplex RNA unwinding activity of archaeal RNase J depends on processive exoribonucleolysis coupled steric occlusion by its structural archaeal loops

机译:archaeal rnasej的新鉴定的双链RNA展开活动取决于其结构古圈的加工开口核心偶联耦合空间闭塞

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摘要

RNase J is a prokaryotic 5 '-3 ' exo/endoribonuclease that functions in mRNA decay and rRNA maturation. Here, we report a novel duplex unwinding activity of mpy-RNase J, an archaeal RNase J fromMethanolobus psychrophilus, which enables it to degrade duplex RNAs with hairpins up to 40 bp when linking a 5 ' single-stranded overhangs of >= 7 nt, corresponding to the RNA channel length. A 6-nt RNA-mpy-RNase J-S247A structure reveals the RNA-interacting residues and a steric barrier at the RNA channel entrance comprising two archaeal loops and two helices. Mutagenesis of the residues key to either exoribonucleolysis or RNA translocation diminished the duplex unwinding activity. Substitution of the residues in the steric barrier yielded stalled degradation intermediates at the duplex RNA regions. Thus, an exoribonucleolysis-driven and steric occlusion-based duplex unwinding mechanism was identified. The duplex unwinding activity confers mpy-RNase J the capability of degrading highly structured RNAs, including the bacterial REP RNA, and archaeal mRNAs, rRNAs, tRNAs, SRPs, RNase P and CD-box RNAs, providing an indicative of the potential key roles of mpy-RNase J in pleiotropic RNA metabolisms. Hydrolysis-coupled duplex unwinding activity was also detected in a bacterial RNase J, which may use a shared but slightly different unwinding mechanism from archaeal RNase Js, indicating that duplex unwinding is a common property of the prokaryotic RNase Js.
机译:RNase J是一种原核5'-3'EXO / upidibonuclease,其在mRNA衰减和RRNA成熟中起作用。在这里,我们报告了MPE-RNase J的新型双工解除活性,Archaeal RNase J FilmmethanolobusScigurecrophilus,它使得在连接5'单链悬垂> = 7nt的单链悬垂时,可以将其与高达40 bp的发夹降低。对应于RNA通道长度。 6-NT RNA-MPY-RNaseJ-S247A结构揭示了RNA相互作用的残基和RNA通道入口处的空间屏障,包括两个古颈环和两个螺旋。残留物的诱变键对放射性核糖或RNA易位的诱变减少了双相展开活性。在双相RNA区域中取代空间屏障中残留物的残留物在双相RNA区域产生停滞的降解中间体。因此,鉴定了核心核酸驱动和基于空间闭塞的双链焊接机制。双工展开活动赋予MPY-RNaseJ降解高度结构化RNA的能力,包括细菌rep RNA和archaeal mRNA,RRNA,RRNA,SRP,RNase P和CD盒RNA,提供了指示潜在的关键作用Pleiotropic RNA代谢中的Mpy-RNase J.在细菌RNase j中也检测到水解偶联的双工展开活性,其可以使用来自archaeal rnase js的共享但略微不同的退出机制,表明双工展开是原核rnase js的常见特性。

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  • 来源
    《RNA biology》 |2020年第10期|共12页
  • 作者单位

    Chinese Acad Sci Inst Microbiol State Key Lab Microbial Resources 1 Beichen West Rd Beijing;

    Chinese Acad Sci Inst Biophys Beijing Peoples R China;

    Hubei Univ Med Sch Basic Med Sci Shiyan Peoples R China;

    Chinese Acad Sci Inst Microbiol State Key Lab Microbial Resources 1 Beichen West Rd Beijing;

    Chinese Acad Sci Inst Microbiol State Key Lab Microbial Resources 1 Beichen West Rd Beijing;

    Chinese Acad Sci Inst Microbiol State Key Lab Microbial Resources 1 Beichen West Rd Beijing;

    Chinese Acad Sci Inst Microbiol State Key Lab Microbial Resources 1 Beichen West Rd Beijing;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    Archaeal RNase J; duplex unwinding; processive exoribonucleolysis; steric occlusion; highly structured RNA degradation;

    机译:archaeal rnase j;双面展开;加工开胃核酸;空间闭塞;高度结构化的RNA降解;
  • 入库时间 2022-08-20 05:08:32

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