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Improved design of hammerhead ribozyme for selective digestion of target RNA through recognition of site-specific adenosine-to-inosine RNA editing

机译:通过识别位点特异性腺苷到肌苷的RNA编辑改进了锤头状核酶的选择性消化目标RNA的设计

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摘要

Adenosine-to-inosine (A-to-I) RNA editing is an endogenous regulatory mechanism involved in various biological processes. Site-specific, editing-state–dependent degradation of target RNA may be a powerful tool both for analyzing the mechanism of RNA editing and for regulating biological processes. Previously, we designed an artificial hammerhead ribozyme (HHR) for selective, site-specific RNA cleavage dependent on the A-to-I RNA editing state. In the present work, we developed an improved strategy for constructing a trans-acting HHR that specifically cleaves target editing sites in the adenosine but not the inosine state. Specificity for unedited sites was achieved by utilizing a sequence encoding the intrinsic cleavage specificity of a natural HHR. We used in vitro selection methods in an HHR library to select for an extended HHR containing a tertiary stabilization motif that facilitates HHR folding into an active conformation. By using this method, we successfully constructed highly active HHRs with unedited-specific cleavage. Moreover, using HHR cleavage followed by direct sequencing, we demonstrated that this ribozyme could cleave serotonin 2C receptor (HTR2C) mRNA extracted from mouse brain, depending on the site-specific editing state. This unedited-specific cleavage also enabled us to analyze the effect of editing state at the E and C sites on editing at other sites by using direct sequencing for the simultaneous quantification of the editing ratio at multiple sites. Our approach has the potential to elucidate the mechanism underlying the interdependencies of different editing states in substrate RNA with multiple editing sites.
机译:腺苷到肌苷(A到I)RNA编辑是一种涉及各种生物学过程的内源性调节机制。特定于位点,依赖编辑状态的靶RNA降解可能是分析RNA编辑机制和调节生物学过程的强大工具。以前,我们设计了一种人工锤头状核酶(HHR),用于根据A对I RNA编辑状态进行选择性,特定位点的RNA切割。在目前的工作中,我们开发了一种改进的策略,用于构建反式HHR,该HHR可特异性切割腺苷而不是肌苷状态的靶标编辑位点。未编码位点的特异性是通过利用编码天然HHR内在切割特异性的序列实现的。我们在HHR库中使用了体外选择方法,以选择包含有助于HHR折叠成活性构象的三级稳定基序的扩展HHR。通过使用此方法,我们成功构建了具有未经编辑的特异性裂解的高活性HHR。此外,使用HHR切割,然后直接测序,我们证明了这种核酶可以切割从小鼠脑中提取的血清素2C受体(HTR2C)mRNA,具体取决于位点特异性编辑状态。这种未编辑的特异性切割还使我们能够通过使用直接测序同时量化多个位点的编辑率来分析E和C位点的编辑状态对其他位点的编辑的影响。我们的方法有可能阐明具有多个编辑位点的底物RNA中不同编辑状态之间相互依赖性的潜在机制。

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