Discovery of the Universal tRNA Binding Mode for the TsaD-like Components of the t6A tRNA Modification Pathway

B. Stec
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Abstract

Covalent addition of the threonylcarbamoyl group to N(6) of adenosine 37 (t6A modification) within the anticodon loop of several tRNAs is central to the translational fidelity in all known organisms. Structures for each of the enzyme components in the Tsa (t6A) pathway from all three kingdoms of life have been determined previously. In order to shed light on the poorly defined final step of t6A tRNA modification by TsaD-like components, we performed modeling studies. By docking a tRNA substrate molecule onto reanalyzed complete models of three TsaD-like proteins—TsaD from T. maritima, Qri7 from bacteria, and Kae1 from yeast—we identified a binding site that is common to all of them. An apparently universal binding mode has perfectly oriented tRNA for catalysis by TsaD. Furthermore, it suggests how the conformational changes in TsaD, in response to the binding of the additional regulatory subunits, control enzymatic activity. Re-refinement of the X-ray structure of the TsaBDE complex from T. maritima tentatively suggests that the moiety bound at the active site of the TsaD component is threonylcarbamoyl-AMP (TC-AMP). These findings suggest a detailed model for the mechanism of the catalytic reaction carried out by the TsaD-like components that explains the transfer of unstable TC-AMP from TsaC to TsaD proteins in the t6A modification pathway.
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t6A tRNA修饰途径中tsad样组分的通用tRNA结合模式的发现
在所有已知的生物体中,在几种tRNA的反密码子环内,将苏氨酸氨酰基共价添加到腺苷37的N(6)(t6A修饰)是翻译保真度的核心。来自所有三个生命王国的Tsa(t6A)途径中每个酶组分的结构先前已经确定。为了阐明TsaD样成分修饰t6A tRNA的最后一步定义不清,我们进行了建模研究。通过将tRNA底物分子对接到三种TsaD样蛋白的重新分析的完整模型上——来自T.maritima的TsaD、来自细菌的Qri7和来自酵母的Kae1——我们确定了一个对所有这些蛋白都通用的结合位点。一种明显普遍的结合模式具有用于TsaD催化的完美定向的tRNA。此外,它还表明TsaD的构象变化是如何响应额外调节亚基的结合来控制酶活性的。对来自T.maritima的TsaBDE复合物的X射线结构的再细化初步表明,结合在TsaD组分的活性位点的部分是苏氨酸氨基甲酰基AMP(TC-AMP)。这些发现为TsaD样组分进行的催化反应机制提供了一个详细的模型,该模型解释了在t6A修饰途径中不稳定的TC-AMP从TsaC转移到TsaD蛋白。
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