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The Brown Algae Pl.LSU/2 Group II Intron-Encoded Protein Has Functional Reverse Transcriptase and Maturase Activities

机译:褐藻pl.LsU / 2 II组内含子编码蛋白具有功能性逆转录酶和成熟酶活动

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摘要

Group II introns are self-splicing mobile elements found in prokaryotes and eukaryotic organelles. These introns propagate by homing into precise genomic locations, following assembly of a ribonucleoprotein complex containing the intron-encoded protein (IEP) and the spliced intron RNA. Engineered group II introns are now commonly used tools for targeted genomic modifications in prokaryotes but not in eukaryotes. We speculate that the catalytic activation of currently known group II introns is limited in eukaryotic cells. The brown algae Pylaiella littoralis Pl.LSU/2 group II intron is uniquely capable of in vitro ribozyme activity at physiological level of magnesium but this intron remains poorly characterized. We purified and characterized recombinant Pl.LSU/2 IEP. Unlike most IEPs, Pl.LSU/2 IEP displayed a reverse transcriptase activity without intronic RNA. The Pl.LSU/2 intron could be engineered to splice accurately in Saccharomyces cerevisiae and splicing efficiency was increased by the maturase activity of the IEP. However, spliced transcripts were not expressed. Furthermore, intron splicing was not detected in human cells. While further tool development is needed, these data provide the first functional characterization of the PI.LSU/2 IEP and the first evidence that the Pl.LSU/2 group II intron splicing occurs in vivo in eukaryotes in an IEP-dependent manner.
机译:第二组内含子是在原核生物和真核细胞器中发现的自剪接移动元件。这些内含子在组装包含内含子编码蛋白(IEP)和剪接的内含子RNA的核糖核蛋白复合物后,通过归巢到精确的基因组位置进行繁殖。现在,工程化的II组内含子是原核生物而非真核生物中用于靶向基因组修饰的常用工具。我们推测真核细胞中目前已知的第二类内含子的催化激活是有限的。褐藻Pylaiella littoralis Pl.LSU / 2 II组内含子在镁的生理水平上具有独特的体外核酶活性,但该内含子的特性仍然较差。我们纯化并鉴定了重组Pl.LSU / 2 IEP。与大多数IEP不同,Pl.LSU / 2 IEP在没有内含子RNA的情况下显示出逆转录酶活性。 Pl.LSU / 2内含子可以被工程化为在酿酒酵母中准确剪接,并且IEP的成熟酶活性提高了剪接效率。但是,剪接的转录本未表达。此外,在人类细胞中未检测到内含子剪接。尽管需要进一步的工具开发,但这些数据提供了PI.LSU / 2 IEP的第一个功能特征,以及Pl.LSU / 2 II组内含子剪接在真核生物中以IEP依赖性的方式在体内发生的第一个证据。

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