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分枝核酶与其相关归巢内切酶 mRNA 之间的分子间相互作用。

Intermolecular interaction between a branching ribozyme and associated homing endonuclease mRNA.

机构信息

RNA and Transcriptomics Group, Faculty of Health Sciences, University of Tromsø, N-9037 Tromsø, Norway.

出版信息

Biol Chem. 2011 Apr;392(6):491-9. doi: 10.1515/BC.2011.055. Epub 2011 Apr 17.

Abstract

RNA tertiary interactions involving docking of GNRA (N; any base; R; purine) hairpin loops into helical stem structures on other regions of the same RNA are one of the most common RNA tertiary interactions. In this study, we investigated a tertiary association between a GAAA hairpin tetraloop in a small branching ribozyme (DiGIR1) and a receptor motif (HEG P1 motif) present in a hairpin structure on a separate mRNA molecule. DiGIR1 generates a 2', 5' lariat cap at the 5' end of its downstream homing endonuclease mRNA by catalysing a self-cleavage branching reaction at an internal processing site. Upon release, the 5' end of the mRNA forms a distinct hairpin structure termed HEG P1. Our biochemical data, in concert with molecular 3D modelling, provide experimental support for an intermolecular tetraloop receptor interaction between the L9 GAAA in DiGIR1 and a GNRA tetraloop receptor-like motif (UCUAAG-CAAGA) found within the HEG P1. The biological role of this interaction appears to be linked to the homing endonuclease expression by promoting post-cleavage release of the lariat capped mRNA. These findings add to our understanding of how protein-coding genes embedded in nuclear ribosomal DNA are expressed in eukaryotes and controlled by ribozymes.

摘要

涉及将 GNRA(N;任何碱基;R;嘌呤)发夹环对接至同一 RNA 上其他区域的螺旋茎结构的 RNA 三级相互作用是最常见的 RNA 三级相互作用之一。在这项研究中,我们研究了一个小分支核酶(DiGIR1)中的 GAAA 发夹四环与另一个 mRNA 分子上发夹结构中存在的受体基序(HEG P1 基序)之间的三级关联。DiGIR1 通过在内部加工位点催化自我切割分支反应,在其下游归巢内切酶 mRNA 的 5' 端生成 2',5' 套索帽。释放后,mRNA 的 5' 端形成一个独特的发夹结构,称为 HEG P1。我们的生化数据与分子 3D 建模相结合,为 DiGIR1 中的 L9 GAAA 与 HEG P1 内发现的 GNRA 四环受体样基序(UCUAAG-CAAGA)之间的分子间四环受体相互作用提供了实验支持。这种相互作用的生物学作用似乎与内切酶表达有关,通过促进套索帽 mRNA 的切割后释放来促进其表达。这些发现增加了我们对核核糖体 DNA 中嵌入的蛋白编码基因如何在真核生物中表达以及受核酶控制的理解。

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