A pseudouridine synthase shapes tRNA structural dynamics through both catalysis and remodeling.

Julia Widom, Emily Dennis, Nico Conoan Nieves, Abigail Vaaler, Madison Kadrmas, Maggie Barry, David Garcia
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Abstract

Transfer RNA has long served as an exemplar of a thermodynamically stable, structured RNA. Yet it undergoes significant structural changes upon binding and catalysis by diverse modification enzymes. We leveraged optical binding assays and single-molecule FRET to observe tRNA structural dynamics before and upon interaction with the conserved pseudouridine synthase Pus4/TruB. We show that unmodified and pseudouridylated tRNA similarly sample one open and two closed conformations, dynamically. Binding by Pus4 to unmodified tRNA populates additional conformational states, gradually approaching an ensemble that is adopted sooner by tRNA that was pseudouridylated prior to engaging Pus4. A catalytically incompetent mutant of Pus4 binds more slowly and remodels unmodified and pre-modified tRNAs into different conformational ensembles than wild-type enzyme. Thus, Pus4 both catalyzes a lasting chemical change on tRNA and remodels it over time, perhaps to advance subsequent steps of tRNA maturation.

假尿嘧啶合成酶通过催化和重塑塑造tRNA结构动力学。
长期以来,转移RNA一直是热力学稳定的结构RNA的典范。但在多种修饰酶的结合和催化作用下,其结构发生了显著的变化。我们利用光学结合实验和单分子FRET来观察tRNA与保守的假尿嘧啶合成酶Pus4/TruB相互作用前后的结构动力学。我们发现未修饰的和假尿苷化的tRNA类似地动态采样一个开放和两个封闭的构象。Pus4与未修饰的tRNA结合会产生额外的构象状态,逐渐接近于在与Pus4结合之前被假尿嘧啶化的tRNA更快采用的整体。与野生型酶相比,催化能力不足的Pus4突变体结合速度更慢,并将未修饰和预修饰的trna重塑成不同的构象组合。因此,Pus4既催化了tRNA上持久的化学变化,又随着时间的推移对其进行了重塑,这可能会促进tRNA成熟的后续步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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