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In vitro characterization of the splicing efficiency and fidelity of the RmInt1 group II intron as a means of controlling the dispersion of its host mobile element

机译:RmInt1 II组内含子的剪接效率和保真度的体外表征作为控制其宿主移动元件分散的一种手段

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摘要

Group II introns are catalytic RNAs that are excised from their precursors in a protein-dependent manner in vivo. Certain group II introns can also react in a protein-independent manner under nonphysiological conditions in vitro. The efficiency and fidelity of the splicing reaction is crucial, to guarantee the correct formation and expression of the protein-coding mRNA. RmInt1 is an efficient mobile intron found within the ISRm2011-2 insertion sequence in the symbiotic bacterium Sinorhizobium meliloti. The RmInt1 intron self-splices in vitro, but this reaction generates side products due to a predicted cryptic IBS1* sequence within the 3′ exon. We engineered an RmInt1 intron lacking the cryptic IBS1* sequence, which improved the fidelity of the splicing reaction. However, atypical circular forms of similar electrophoretic mobility to the lariat intron were nevertheless observed. We analyzed a run of four cytidine residues at the 3′ splice site potentially responsible for a lack of fidelity at this site leading to the formation of circular intron forms. We showed that mutations of residues base-pairing in the tertiary EBS3–IBS3 interaction increased the efficiency and fidelity of the splicing reaction. Our results indicate that RmInt1 has developed strategies for decreasing its splicing efficiency and fidelity. RmInt1 makes use of unproductive splicing reactions to limit the transposition of the insertion sequence into which it inserts itself in its natural context, thereby preventing potentially harmful dispersion of ISRm2011-2 throughout the genome of its host.
机译:II组内含子是催化RNA,可在体内以蛋白质依赖性方式从其前体中切除。某些II组内含子还可以在非生理条件下体外以蛋白质非依赖性方式反应。剪接反应的效率和保真度至关重要,以确保编码蛋白质的mRNA正确形成和表达。 RmInt1是在共生细菌苜蓿中华根瘤菌的ISRm2011-2插入序列内发现的高效内含子。 RmInt1内含子在体外会自我剪接,但是由于3'外显子中的预测性IBS1 *隐含序列,该反应会产生副产物。我们设计了一个RmInt1内含子,该内含子缺少隐秘的IBS1 *序列,从而提高了剪接反应的保真度。然而,仍然观察到与套索内含子相似的电泳迁移率的非典型圆形形式。我们分析了在3'剪接位点的四个胞苷残基的运行,这可能是造成该位点缺乏保真度导致圆形内含子形式形成的原因。我们表明,在第三级EBS3–IBS3相互作用中残基碱基配对的突变提高了剪接反应的效率和保真度。我们的结果表明,RmInt1已开发出降低其剪接效率和保真度的策略。 RmInt1利用非生产性的剪接反应来限制插入序列的转座,使其在自然环境中自我插入,从而防止了ISRm2011-2在其宿主基因组中的潜在有害扩散。

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