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Autocatalytic RNA cleavage in the human beta-globin pre-mRNA promotes transcription termination

机译:人类β-球蛋白pre-mRNA中的自催化RNA切割促进转录终止

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New evidence indicates that termination of transcription is an important regulatory step, closely related to transcriptional interference(1) and even transcriptional initiation(2). However, how this occurs is poorly understood. Recently, in vivo analysis of transcriptional termination for the human beta-globin gene revealed a new phenomenon-co-transcriptional cleavage (CoTC)(3). This primary cleavage event within beta-globin pre-messenger RNA, downstream of the poly(A) site, is critical for efficient transcriptional termination by RNA polymerase II3. Here we show that the CoTC process in the human beta-globin gene involves an RNA self-cleaving activity. We characterize the autocatalytic core of the CoTC ribozyme and show its functional role in efficient termination in vivo. The identified core CoTC is highly conserved in the 3' flanking regions of other primate beta-globin genes. Functionally, it resembles the 3' processive, self-cleaving ribozymes described for the protein-encoding genes from the myxomycetes Didymium iridis and Physarum polycephalum, indicating evolutionary conservation of this molecular process. We predict that regulated autocatalytic cleavage elements within pre-mRNAs may be a general phenomenon and that functionally it may provide the entry point for exonucleases involved in mRNA maturation, turnover and, in particular, transcriptional termination.
机译:新证据表明,转录终止是重要的调控步骤,与转录干扰(1)甚至转录起始(2)密切相关。但是,这种情况的发生方式知之甚少。最近,对人类β-珠蛋白基因转录终止的体内分析揭示了一种新现象,即共转录裂解(CoTC)(3)。在poly(A)位点下游的β-珠蛋白前信使RNA内的此主要裂解事件对于RNA聚合酶II3的有效转录终止至关重要。在这里,我们显示人β-珠蛋白基因中的CoTC过程涉及RNA自切割活性。我们表征CoTC核酶的自动催化核心,并显示其在体内有效终止中的功能性作用。鉴定出的核心CoTC在其他灵长类β-珠蛋白基因的3'侧翼区域高度保守。在功能上,它类似于3'进行性,自我切割的核酶,描述了来自粘菌丝伊迪氏菌和多头Physarum polycephalum的蛋白质编码基因,表明该分子过程的进化保守性。我们预测,pre-mRNA内受调控的自催化裂解元件可能是普遍现象,并且在功能上它可能为涉及mRNA成熟,转换和特别是转录终止的核酸外切酶提供切入点。

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