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Theoretical Study on the Factors Controlling the Stability of the Borate Complexes of Ribose, Arabinose, Lyxose, and Xylose

机译:核糖,阿拉伯糖,木糖和木糖硼酸盐配合物稳定性控制因素的理论研究

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摘要

Recent experimental studies suggest that complexation with borate minerals stabilizes ribose, and that the borate complex of ribose is more stable than those of related aldopentoses, that is, arabinose, lyxose, and xylose. These findings have revived the debate on the plausibility of the RNA-world theory, because the), provide an explanation for the stabilization and selection of ribose in prebiotic conditions. In this paper we unravel the factors that make the ribose-borate complex the most stable one. For this purpose, we have investigated the structure and stability of the ribose-, arabinose-, lyxose-, and xylose-borate complexes using density functional theory and a continuum solvent approach. The computed results reveal that in the aldopentose-borate complexes, the electrostatic field of the borate is strong enough to change the orientation of the nearby hydroxyl groups compared to noncomplexed aldopentoses. In addition, we show that the distinct stability of the ribose-borate 2:1 complex can be attributed to 1) a strong hydrogen bond between the ribose 3-OH and one of the negatively charged borate oxygen atoms, and 2) a favorable contact between the aqueous medium and the 5-CH2OH group due to the space separation between the 5-CH2OH group and the borate anion.
机译:最近的实验研究表明,与硼酸盐矿物质的络合可稳定核糖,并且核糖的硼酸盐络合物比相关的醛糖(阿拉伯糖,lyxose和木糖)更稳定。这些发现使人们对RNA世界理论的合理性重新进行了辩论,因为)为益生元条件下核糖的稳定和选择提供了解释。在本文中,我们揭示了使核糖-硼酸盐复合物成为最稳定的因素。为此,我们使用密度泛函理论和连续溶剂方法研究了核糖-,阿拉伯糖-,木糖-和木糖-硼酸酯复合物的结构和稳定性。计算结果表明,与非复合醛糖酶相比,在戊戊糖-硼酸盐复合物中,硼酸盐的静电场足够强,足以改变附近羟基的方向。此外,我们表明核糖-硼酸盐2:1配合物的独特稳定性可归因于1)核糖3-OH与带负电荷的硼酸氧原子之一之间的强氢键,以及2)良好的接触由于5-CH 2 OH基团和硼酸根阴离子之间存在空间分隔,因此在水性介质和5-CH 2 OH基团之间存在一个差。

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