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首页> 外文期刊>Journal of Molecular Biology >Involvement of DEAD-box proteins in group I and group II intron splicing. Biochemical characterization of Mss116p, ATP hydrolysis-dependent and -independent mechanisms, and general RNA chaperone activity
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Involvement of DEAD-box proteins in group I and group II intron splicing. Biochemical characterization of Mss116p, ATP hydrolysis-dependent and -independent mechanisms, and general RNA chaperone activity

机译:DEAD-box蛋白参与I组和II组内含子剪接。 Mss116p的生化表征,ATP水解依赖性和非依赖性机制以及一般的RNA伴侣活性

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摘要

The RNA-catalyzed splicing of group I and group II introns is facilitated by proteins that stabilize the active RNA structure or act as RNA chaperones to disrupt stable inactive structures that are kinetic traps in RNA folding. In Neurospora crassa and Saccharomyces cerevisiae, the latter function is fulfilled by specific DEAD-box proteins, denoted CYT-19 and Mss116p, respectively. Previous studies showed that purified CYT-19 stimulates the in vitro splicing of structurally diverse group I and group Ii introns, and uses the energy of ATP binding or hydrolysis to resolve kinetic traps. Here, we purified Mss116p and show that it has RNA-dependent ATPase activity, unwinds RNA duplexes in a non-polar fashion, and promotes ATP-independent strand-annealing. Further, we show that Mss116p binds RNA non-II, intron RNAs, as well as RNA cleavage by the aI5 gamma-derived D135 ribozyme., However, Mss116p also has ATP hydrolysis-independent effects on some of these reactions, which are not shared by CYT-19 and may reflect differences in its RNA-binding properties. We also show that a non-mitochondrial DEAD-box protein, yeast Ded1p, can function almost as efficiently as CYT19 and Mss116p in splicing the yeast aI5 gamma group II intron and less efficiently in splicing the bI1 group II intron. Together, our results show that Mss116p, like CYT-19, can act broadly as an RNA chaperone to stimulate the splicing of diverse group I and group II introns, and that Ded1p also has an RNA chaperone activity that can be assayed by its effect on splicing mitochondrial introns. Nevertheless, these DEAD-box protein RNA chaperones are not completely interchangeable and appear to function in somewhat different ways, using biochemical activities that have likely been tuned by coevolution to function optimally on specific: RNA substrates. Published by Elsevier Ltd.
机译:稳定活性RNA结构或充当RNA伴侣以破坏稳定的无活性结构(是RNA折叠中的动态陷阱)的蛋白质可促进I和II组内含子的RNA催化剪接。在芥末神经孢菌和酿酒酵母中,后者的功能由特定的DEAD-box蛋白(分别表示为CYT-19和Mss116p)来实现。先前的研究表明,纯化的CYT-19会刺激结构多样的I组和Ii组内含子的体外剪接,并利用ATP结合或水解的能量来解决动力学陷阱。在这里,我们纯化了Mss116p,并显示它具有RNA依赖性ATPase活性,以非极性方式解开RNA双链体,并促进了ATP依赖性链退火。此外,我们显示Mss116p结合RNA non-II,内含子RNA以及被aI5γ衍生的D135核酶进行的RNA切割。但是,Mss116p对其中的某些反应也具有ATP水解非依赖性作用,但尚未共享可能是由CYT-19介导的,可能反映了其RNA结合特性的差异。我们还显示,非线粒体DEAD-box蛋白酵母Ded1p可以与CYT19和Mss116p几乎一样有效地与酵母aI5γII型内含子进行剪接,而与bI1 II类内含子的剪接效率不高。在一起,我们的结果表明,Mss116p与CYT-19一样,可以广泛地充当RNA伴侣,以刺激不同的I组和II组内含子的剪接,并且Ded1p也具有RNA伴侣活性,可以通过对以下分子的作用来分析剪接线粒体内含子。然而,这些DEAD-box蛋白RNA分子伴侣不是完全可互换的,似乎以某种不同的方式发挥作用,使用的生物化学活性可能已经通过共同进化进行了调整,从而在特定的RNA底物上发挥了最佳功能。由Elsevier Ltd.发布

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