首页> 美国卫生研究院文献>Nucleic Acids Research >Stacking of Crick Wobble pair and Watson-Crick pair: stability rules of G-U pairs at ends of helical stems in tRNAs and the relation to codon-anticodon Wobble interaction.
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Stacking of Crick Wobble pair and Watson-Crick pair: stability rules of G-U pairs at ends of helical stems in tRNAs and the relation to codon-anticodon Wobble interaction.

机译:Crick摆动对和Watson-Crick对的堆叠:tRNA螺旋茎末端的G-U对的稳定性规则以及与密码子-反密码子相互作用的关系。

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摘要

The occurrence of the noncomplementary G-U base pair at the end of a helix is found to be governed by stacking interactions. As a rule, a G-U pair with G on the 5'-side of a Watson-Crick base pair exhibits strikingly greater stacking overlap with the Watson-Crick base pair than a G-U pair on the 3'-side of a Watson-Crick base pair. The former arrangement is expected to be more stable and indeed is observed 29 times out of 32 in the known transfer RNA molecules. In accordance with this rule, the major wobble base pairs G-U or I-U in codon-anticodon interactions have G or I on the 5'-side of the anticodon. Similarly, in initiator tRNAs, this rule is obeyed where now the G is the first letter of the codon (5'-side). In the situation where U is in the wobble position of the anticodon, it is usually substituted at C(5) andmay also have a 2-thio group and it can read one to four codons depending on its modifications. A G at the wobble position of the anticodon can recognize the two codons ending with U or C and modification of G (unless it is I) does not change its reading properties.
机译:发现在螺旋末端非互补的G-U碱基对的发生受堆积相互作用的支配。通常,Watson-Crick碱基对的5'侧带有G的GU对与Watson-Crick碱基对的叠加重叠比Watson-Crick碱基的3'侧显着更大对。预期前一种排列会更稳定,实际上在已知的转移RNA分子中观察到32的29倍。根据该规则,密码子-反密码子相互作用中的主要摆动碱基对G-U或I-U在反密码子的5'侧具有G或I。类似地,在启动子tRNA中,遵循该规则,其中G现在是密码子的第一个字母(5'侧)。在U处于反密码子摆动位置的情况下,它通常在C(5)处被取代,并且可能还具有2-硫代基团,并且根据其修饰,它可以读取一到四个密码子。反密码子摆动位置的G可以识别以U或C结尾的两个密码子,并且G的修饰(除非是I)不会改变其阅读特性。

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