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Structural roles of CTG repeats in slippage expansion during DNA replication

机译:CTG在DNA复制过程中重复滑动扩展中的结构作用

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CTG triplet repeat sequences have been found to form slipped-strand structures leading to self-expansion during DNA replication. The lengthening of these repeats causes the onset of neurodegenerative diseases, such as myotonic dystrophy. In this study, electrophoretic and NMR spectroscopic studies have been carried out to investigate the length and the structural roles of CTG repeats in affecting the hairpin formation propensity. Direct NMR evidence has been successfully obtained the first time to support the presence of three types of hairpin structures in sequences containing 1-10 CTG repeats. The first type contains no intra-loop hydrogen bond and occurs when the number of repeats is less than four. The second type has a 4 nt TGCT-loop and occurs in sequences with even number of repeats. The third type contains a 3 nt CTG-loop and occurs in sequences with odd number of repeats. Although stabilizing interactions have been identified between CTG repeats in both the second and third types of hairpins, the structural differences observed account for the higher hairpin formation propensity in sequences containing even number of CTG repeats. The results of this study confirm the hairpin loop structures and explain how slippage occurs during DNA replication.
机译:已经发现CTG三联体重复序列形成滑链结构,导致DNA复制过程中自扩。这些重复序列的延长导致神经退行性疾病的发作,例如强直性肌营养不良。在这项研究中,已进行了电泳和NMR光谱研究,以研究CTG重复序列的长度和结构在影响发夹形成倾向中的作用。首次成功地获得了直接NMR证据,以证明在包含1-10个CTG重复序列的序列中存在三种类型的发夹结构。第一类不包含环内氢键,当重复数少于四个时出现。第二种类型具有4 nt TGCT环,并以偶数个重复序列出现。第三类包含一个3 nt CTG环,并以奇数个重复序列出现。尽管已经在第二种和第三种发夹中确定了CTG重复序列之间的稳定相互作用,但是观察到的结构差异说明了在包含偶数个CTG重复序列的序列中较高的发夹形成倾向。这项研究的结果证实了发夹环的结构,并解释了DNA复制过程中如何发生滑动。

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