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锤头状核酶核心中沃森-克里克碱基对交换的耐受性由周围元件决定。

The tolerance to exchanges of the Watson Crick base pair in the hammerhead ribozyme core is determined by surrounding elements.

作者信息

Przybilski Rita, Hammann Christian

出版信息

RNA. 2007 Oct;13(10):1625-30. doi: 10.1261/rna.631207. Epub 2007 Jul 31.

Abstract

Tertiary interacting elements are important features of functional RNA molecules, for example, in all small nucleolytic ribozymes. The recent crystal structure of a tertiary stabilized type I hammerhead ribozyme revealed a conventional Watson-Crick base pair in the catalytic core, formed between nucleotides C3 and G8. We show that any Watson-Crick base pair between these positions retains cleavage competence in two type III ribozymes. In the Arabidopsis thaliana sequence, only moderate differences in cleavage rates are observed for the different base pairs, while the peach latent mosaic viroid (PLMVd) ribozyme exhibits a preference for a pyrimidine at position 3 and a purine at position 8. To understand these differences, we created a series of chimeric ribozymes in which we swapped sequence elements that surround the catalytic core. The kinetic characterization of the resulting ribozymes revealed that the tertiary interacting loop sequences of the PLMVd ribozyme are sufficient to induce the preference for Y3-R8 base pairs in the A. thaliana hammerhead ribozyme. In contrast to this, only when the entire stem-loops I and II of the A. thaliana sequences are grafted on the PLMVd ribozyme is any Watson-Crick base pair similarly tolerated. The data provide evidence for a complex interplay of secondary and tertiary structure elements that lead, mediated by long-range effects, to an individual modulation of the local structure in the catalytic core of different hammerhead ribozymes.

摘要

三级相互作用元件是功能性RNA分子的重要特征,例如在所有小核裂解性核酶中。最近一种三级稳定的I型锤头状核酶的晶体结构揭示了在催化核心中由核苷酸C3和G8形成的传统沃森-克里克碱基对。我们表明,在这两个位置之间的任何沃森-克里克碱基对在两种III型核酶中都保留切割能力。在拟南芥序列中,不同碱基对的切割速率仅观察到适度差异,而桃潜隐花叶类病毒(PLMVd)核酶在第3位偏好嘧啶,在第8位偏好嘌呤。为了理解这些差异,我们构建了一系列嵌合核酶,其中我们交换了围绕催化核心的序列元件。对所得核酶的动力学表征表明,PLMVd核酶的三级相互作用环序列足以在拟南芥锤头状核酶中诱导对Y3-R8碱基对的偏好。与此相反,只有当拟南芥序列的整个茎环I和II嫁接到PLMVd核酶上时,任何沃森-克里克碱基对才会被类似地耐受。这些数据为二级和三级结构元件的复杂相互作用提供了证据,这种相互作用在远程效应的介导下,导致对不同锤头状核酶催化核心局部结构的个体调节。

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