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Thermodynamic contribution and nearest-neighbor parameters of pseudouridine-adenosine base pairs in oligoribonucleotides

机译:寡核糖核苷酸中假尿苷-腺苷碱基对的热力学贡献和最近邻参数

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Pseudouridine (ψ) is the most common noncanonical nucleotide present in naturally occurring RNA and serves a variety of roles in the cell, typically appearing where structural stability is crucial to function. ψ residues are isomerized from native uridine residues by a class of highly conserved enzymes known as pseudouridine synthases. In order to quantify the thermodynamic impact of pseudouridylation on U-A base pairs, 24 oligoribonucleotides, 16 internal and eight terminal ψ-A oligoribonucleotides, were thermodynamically characterized via optical melting experiments. The thermodynamic parameters derived from two-state fits were used to generate linearly independent parameters for use in secondary structure prediction algorithms using the nearestneighbor model. On average, internally pseudouridylated duplexes were 1.7 kcal/mol more stable than their U-A counterparts, and terminally pseudouridylated duplexes were 1.0 kcal/mol more stable than their U-A equivalents. Due to the fact that ψ-A pairs maintain the same Watson-Crick hydrogen bonding capabilities as the parent U-A pair in A-form RNA, the difference in stability due to pseudouridylation was attributed to two possible sources: the novel hydrogen bonding capabilities of the newly relocated imino group as well as the novel stacking interactions afforded by the electronic configuration of the ψ residue. The newly derived nearest-neighbor parameters for ψ-A base pairs may be used in conjunction with other nearest-neighbor parameters for accurately predicting the most likely secondary structure of A-form RNA containing ψ-A base pairs.
机译:假性尿苷(ψ)是天然存在的RNA中最常见的非规范核苷酸,在细胞中发挥多种作用,通常出现在结构稳定性对功能至关重要的地方。 native残基是通过一类高度保守的酶(称为伪尿苷合酶)从天然尿苷残基异构化的。为了量化假尿苷化对U-A碱基对的热力学影响,通过光学解链实验对24个寡核糖核苷酸,16个内部和8个末端--A寡核糖核苷酸进行了热力学表征。从二态拟合得出的热力学参数用于生成线性独立的参数,以供使用最近邻模型的二级结构预测算法使用。平均而言,内部伪尿苷化双链体比其U-A对应物稳定1.7 kcal / mol,末端伪尿苷化双链体比其U-A等效物稳定1.0 kcal / mol。由于ψ-A对与A型RNA中的亲本UA对保持着相同的Watson-Crick氢键结合能力,因此假尿苷化导致的稳定性差异归因于两种可能的来源:新迁移的亚氨基基团以及ψ残基的电子构型所提供的新型堆积相互作用。新近推导的ψ-A碱基对的最近邻参数可与其他最近邻参数结合使用,以准确地预测包含ψ-A碱基对的A型RNA的最可能的二级结构。

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