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A conformational switch in the DiGIR1 ribozyme involved in release and folding of the downstream I-DirI mRNA

机译:DiGIR1核酶中的一个构象转换参与下游I-DirI mRNA的释放和折叠

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摘要

DiGIR1 is a group I-like cleavage ribozyme found as a structural domain within a nuclear twin-ribozyme group I intron. DiGIR1 catalyzes cleavage by branching at an Internal Processing Site (IPS) leading to formation of a lariat cap at the 5′-end of the 3′-cleavage product. The 3′-cleavage product is subsequently processed into an mRNA encoding a homing endonuclease. By analysis of combinations of 5′- and 3′-deletions, we identify a hairpin in the 5′-UTR of the mRNA (HEG P1) that is formed by conformational switching following cleavage. The formation of HEG P1 inhibits the reversal of the branching reaction, thus giving it directionality. Furthermore, the release of the mRNA is a consequence of branching rather than hydrolytic cleavage. A model is put forward that explains the release of the I-DirI mRNA with a lariat cap and a structured 5′-UTR as a direct consequence of the DiGIR1 branching reaction. The role of HEG P1 in GIR1 branching is reminiscent of that of hairpin P-1 in splicing of the Tetrahymena rRNA group I intron and illustrates a general principle in RNA-directed RNA processing.
机译:DiGIR1是一种I类裂解核酶,在核双核酶I类内含子的一个结构域中发现。 DiGIR1通过在内部加工位点(IPS)上分支来催化裂解,从而导致在3'裂解产物的5'末端形成套索状帽。随后将3'切割产物加工成编码归巢核酸内切酶的mRNA。通过分析5'-和3'-缺失的组合,我们在5'-UTR的mRNA(HEG P1)中确定了一个发夹,该发夹是由切割后的构象转换形成的。 HEG P1的形成抑制了支化反应的逆转,从而使其具有方向性。此外,mRNA的释放是分支而不是水解切割的结果。提出了一个模型,该模型解释了具有套索帽和结构化的5'-UTR的I-DirI mRNA的释放是DiGIR1分支反应的直接结果。 HEG P1在GIR1分支中的作用让人联想到四膜虫rRNA I组内含子剪接中的发夹P-1,并说明了RNA定向RNA加工的一般原理。

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