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Structure-function relationships in the hammerhead ribozyme probed by base rescue.

机译:通过基础营救探测锤头核酶中的结构-功能关系。

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摘要

We previously showed that the deleterious effects from introducing abasic nucleotides in the hammerhead ribozyme core can, in some instances, be relieved by exogenous addition of the ablated base and that the relative ability of different bases to rescue catalysis can be used to probe functional aspects of the ribozyme structure [Peracchi et al., Proc NatAcad Sci USA 93:11522]. Here we examine rescue at four additional positions, 3, 9, 12 and 13, to probe transition state interactions and to demonstrate the strengths and weaknesses of base rescue as a tool for structure-function studies. The results confirm functional roles for groups previously probed by mutagenesis, provide evidence that specific interactions observed in the ground-state X-ray structure are maintained in the transition state, and suggest formation in the transition state of other interactions that are absent in the ground state. In addition, the results suggest transition state roles for some groups that did not emerge as important in previous mutagenesis studies, presumably because base rescue has the ability to reveal interactions that are obscured by local structural redundancy in traditional mutagenesis. The base rescue results are complemented by comparing the effects of the abasic and phenyl nucleotide substitutions. The results together suggest that stacking of the bases at positions 9, 13 and 14 observed in the ground state is important for orienting other groups in the transition state. These findings add to our understanding of structure-function relationships in the hammerhead ribozyme and help delineate positions that may undergo rearrangements in the active hammerhead structure relative to the ground-state structure. Finally, the particularly efficient rescue by 2-methyladenine at position 13 relative to adenine and other bases suggests that natural base modifications may, in some instance, provide additional stability by taking advantage of hydrophobic interactions in folded RNAs.
机译:我们先前表明,在某些情况下,通过外源添加消融碱基可以减轻在锤头状核酶核心中引入无碱基核苷酸的有害影响,并且可以利用不同碱基拯救催化的相对能力来探究其功能方面。核酶结构[Peracchi等人,Proc NatAcad Sci USA 93:11522]。在这里,我们研究了在四个附加位置3、9、12和13处的救援,以探究过渡状态的相互作用并证明基础救援作为结构功能研究工具的优势和劣势。结果证实了先前通过诱变探测的基团的功能作用,提供了证据,表明在基态X射线结构中观察到的特定相互作用在过渡态中得以维持,并暗示了在地下不存在的其他相互作用在过渡态中的形成州。此外,这些结果表明,某些群体的过渡状态角色在先前的诱变研究中并不重要,这大概是因为碱基抢救具有揭示传统诱变中局部结构冗余所掩盖的相互作用的能力。通过比较无碱基和苯基核苷酸取代的作用,可以补充基础拯救结果。结果一起表明,在基态下观察到的碱基在位置9、13和14处的堆叠对于在过渡态下定向其他基团很重要。这些发现增加了我们对锤头型核酶中结构-功能关系的理解,并有助于勾勒出有源锤头型结构相对于基态结构可能发生重排的位置。最后,相对于腺嘌呤和其他碱基,第13位的2-甲基腺嘌呤特别有效地拯救表明,在某些情况下,天然碱基修饰可通过利用折叠RNA中的疏水相互作用提供额外的稳定性。

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