首页> 外文期刊>Nucleic Acids Research >Synthesis and crystal structure of an octamer RNA r(guguuuac)/r(guaggcac) with G·G/U·U tandem wobble base pairs: comparison with other tandem G·U pairs
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Synthesis and crystal structure of an octamer RNA r(guguuuac)/r(guaggcac) with G·G/U·U tandem wobble base pairs: comparison with other tandem G·U pairs

机译:具有G·G / U·U串联摆动碱基对的八聚体RNA r(guguuuac)/ r(guaggcac)的合成和晶体结构:与其他串联G·U配对的比较

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We have determined the crystal structure of the RNA octamer duplex r(guguuuac)/r(guaggcac) with a tandem wobble pair, G·G/U·U (motif III), to compare it with U·G/G·U (motif I) and G·U/U·G (motif II) and to better understand their relative stabilities. The crystal belongs to the rhombohedral space group R3. The hexagonal unit cell dimensions are a = b = 41.92 A, c = 56.41 A, and γ = 120 °, with one duplex in the asymmetric unit. THe structure was solved by the molecular replacement method at 1.9 A resolution and refined to a final R factor of 19.9% and R_(free) of 23.3% for 2862 reflections in the resolution range 10.0-1.9 A with F ≥ 2σ(F). The final model contains 335 atoms for the RNA duplex and 30 water molecules. The A-RNA stacks in the familiar head-to-tail fashion forming a pseudo-continuous helix. The uridine bases of the tandem U·G pairs have slipped towards the minor groove relative to the guanine bases and the uridine O2 atoms form bifurcated hydrogen bonds with the N1 and N2 of guanines. The N2 of guanine and O2 of uridine do not bridge the 'locked' water molecule in the minor groove, as in motifs I and II, but are bridged by water molecules in the major groove. A comparison of base stacking stabilities of motif III with motifs I and II confirms the result of thermodynamic studies, motif I > motif III > motif II.
机译:我们已经确定了带有串联摆动对G·G / U·U(基序III)的RNA八聚体双链体r(guguuuac)/ r(guaggcac)的晶体结构,并将其与U·G / G·U( I)和G·U / U·G(基序II),并更好地了解它们的相对稳定性。晶体属于菱面体空间群R3。六角形晶胞尺寸为a = b = 41.92 A,c = 56.41 A和γ= 120°,其中一个双链体位于不对称单元中。通过分子置换方法以1.9 A的分辨率解析结构,并在10.0-1.9 A的分辨率范围内(F≥2σ(F))将2862次反射的最终R因子细化为19.9%,R_(游离)为23.3%。最终模型包含用于RNA双链体的335个原子和30个水分子。 A-RNA栈以熟悉的从头到尾的方式形成伪连续螺旋。串联的U·G对的尿苷碱基已相对于鸟嘌呤碱基向小槽滑动,尿苷O2原子与鸟嘌呤的N1和N2形成了分叉的氢键。鸟嘌呤的N2和尿苷的O2不像在基序I和II中那样桥接小沟中的“锁定”水分子,而是被大沟中的水分子桥接。将基序III与基序I和II的碱基堆积稳定性进行比较,可以确认热力学研究的结果,即基序I>基序III>基序II。

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