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首页> 外文期刊>Journal of Molecular Biology >A compact RNA tertiary structure contains a buried backbone-k(+) complex.
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A compact RNA tertiary structure contains a buried backbone-k(+) complex.

机译:紧凑的RNA三级结构包含一个掩埋的骨架k(+)复合物。

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The structure of a 58 nucleotide ribosomal RNA fragment buries several phosphate groups of a hairpin loop within a large tertiary core. During refinement of an X-ray crystal structure containing this RNA, a potassium ion was found to be contacted by six oxygen atoms from the buried phosphate groups; the ion is contained completely within the solvent-accessible surface of the RNA. The electrostatic potential at the ion chelation site is unusually large, and more than compensates for the substantial energetic penalties associated with partial dehydration of the ion and displacement of delocalized ions. The very large predicted binding free energy, approximately -30 kcal/mol, implies that the site must be occupied for the RNA to fold. These findings agree with previous studies of the ion-dependent folding of tertiary structure in this RNA, which concluded that a monovalent ion was bound in a partially dehydrated environment where Mg(2+) could not easily compete for binding. By compensating the unfavorable free energy of buried phosphate groups with a chelated ion, the RNA is able to create a larger and more complex tertiary fold than would be possible otherwise. (c) 2002 Elsevier Science Ltd.
机译:一个58个核苷酸的核糖体RNA片段的结构在一个大的第三核中掩盖了发夹环的几个磷酸基团。在精制含有该RNA的X射线晶体结构的过程中,发现钾离子与来自掩埋磷酸基团的六个氧原子接触;离子完全包含在RNA的溶剂可及表面内。离子螯合位点的静电势非常大,并足以补偿与离子部分脱水和离域离子位移有关的大量能量损失。很大的预测结合自由能,约为-30 kcal / mol,意味着该位点必须占据才能使RNA折叠。这些发现与该RNA中三级结构的离子依赖性折叠的先前研究相吻合,该研究得出的结论是,单价离子结合在Mg(2+)无法轻易竞争结合的部分脱水环境中。通过用螯合离子补偿掩埋的磷酸基团的不利自由能,RNA能够产生比其他方式更大,更复杂的叔折叠。 (c)2002爱思唯尔科学有限公司。

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