首页> 美国卫生研究院文献>Nucleic Acids Research >Rate limiting P-O(5) bond cleavage of RNA fragment: ab initio molecular orbital calculations on the base-catalyzed hydrolysis of phosphate.
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Rate limiting P-O(5) bond cleavage of RNA fragment: ab initio molecular orbital calculations on the base-catalyzed hydrolysis of phosphate.

机译:速率限制RNA片段的P-O(5)键裂解:从头开始的分子轨道计算对碱催化的磷酸水解。

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摘要

In order to examine the energetics in base-catalyzed hydrolysis of RNA, a tentative pentacoordinated intermediate (3) has been characterized by molecular orbital calculations. Ab initio studies at the level of 3-21G* indicate that, under the Cs symmetry restricted conditions, the P-O(2) bond possessing antiperiplanar (app) lone pair electrons (Ip) on the equatorial oxygen (O(3)) can be cleaved with almost no barrier (TS1 transition state; 0.08 kcal mol-1), from the pentacoordinated intermediate (3) of base-catalyzed hydrolysis of phosphate, compared to the P-O(5) bond (TS2 transition state; 28.9 kcal mol-1) which lacks app lp assistance from O(3). The dianionic intermediate, however, loses the TS1 transition state thus its property as an intermediate when the Cs restriction is removed. The analysis of the entire potential energy surface enables us to conclude that, in a related system examined by Lim and Karplus [1990) J. Am. Chem. Soc., 112, 5872-5873) for attack by OH- on ethylene phosphate monoanion, the TS1 transition state had also been lost and thus no intermediate had been found. These results further support our earlier conclusions (Taira et al. (1990) Protein Engineering, 3, 691-701) of rate limiting transition state possessing extended P-O(5') bond breaking character (the TS2 transition state) in the base-catalyzed hydrolysis of RNA. Finally, although the lack of 2',3' -migration of phosphate moieties in basic condition appears to be in accord with the short-lived intermediate, it really does not prove the absence of the intermediate. The detail will be discussed in the text.
机译:为了检查碱基催化的RNA水解中的能量,已通过分子轨道计算表征了暂定的五配位中间体(3)。从头算研究在3-21G *的水平上表明,在Cs对称性受限制的条件下,在赤道氧(O(3))上具有反周平面(app)孤对电子(Ip)的PO(2)键可以与PO(5)键(TS2过渡态; 28.9 kcal mol-1)相比,从碱催化的磷酸水解的五配位中间体(3)中几乎没有屏障(TS1过渡态; 0.08 kcal mol-1)裂解)缺少O(3)的应用程序lp协助。然而,双阴离子中间体失去TS1过渡态,因此当除去Cs限制剂时,其作为中间体的性质。对整个势能面的分析使我们得出结论,在由Lim和Karplus [1990] J. Am。所研究的相关系统中。化学Soc。,112,5872-5873)被OH-攻击磷酸亚乙酯单阴离子时,TS1过渡态也丢失了,因此没有发现中间体。这些结果进一步支持了我们的早期结论(Taira等人,(1990)Protein Engineering,3,691-701),即在碱催化下具有扩展的PO(5')键断裂特性(TS2过渡态)的限速过渡态。 RNA水解。最后,尽管在碱性条件下缺乏2',3'-磷酸部分的迁移似乎与短寿命的中间体相符,但实际上并不能证明没有中间体。细节将在本文中讨论。

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