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HIV-1 Psi-RNA茎环SL1完整茎部和凸起的结构

Structure of the intact stem and bulge of HIV-1 Psi-RNA stem-loop SL1.

作者信息

Lawrence Dana C, Stover Carrie C, Noznitsky Jennifer, Wu Zhengrong, Summers Michael F

机构信息

Howard Hughes Medical Institute and Department of Chemistry and Biochemistry, University of Maryland Baltimore County, 1000 Hilltop Circle, Baltimore, MD 21250-5398, USA.

出版信息

J Mol Biol. 2003 Feb 14;326(2):529-42. doi: 10.1016/s0022-2836(02)01305-0.

Abstract

The Psi-RNA packaging signal of the human immunodeficiency virus type-1 (HIV-1) genome contains a 35 nucleotide stem-loop, termed SL1, which is important for efficient genome packaging during virus assembly and for reverse transcription during infectivity. The predicted secondary structure of SL1 consists of an upper stem with a GC-rich loop that facilitates dimerization, a lower stem, and an intervening bulge (G5, A24-G25-G26) that is both strictly conserved and essential for efficient packaging of the viral genome. The structure of the upper stem in both the kissing and duplex dimer forms have been determined recently. Here, we report the structure of an engineered form of SL1 (SL1(m)) that contains a GAGA tetraloop substituted for the GC-rich loop. This construct does not aggregate and remains monomeric at concentrations up to 1mM, enabling structural studies of the intact stems and bulge. The structure was refined using 1H-13C residual dipolar couplings. The upper stem (C6-G12, C17-G23) is in close agreement with X-ray structures of kissing and duplex dimer forms of related oligoribonucleotides, and nucleotides C1-G4 and C27-G30 form the expected A-helical lower stem. Residues G5 and A24 of the predicted bulge form a G-A mismatch that stacks with the upper stem, and residues G25 and G26 stack between the G-A mismatch and the lower stem in a manner that produces a hole in the center of the bulge and a 25(+/-4) degrees bend between the upper and lower stems. SL1(m) exhibits relatively poor affinity for the HIV-1 nucleocapsid protein, suggesting that the bulge plays other roles in genome packaging.

摘要

人类免疫缺陷病毒1型(HIV-1)基因组的ψ-RNA包装信号包含一个35个核苷酸的茎环结构,称为SL1,它对于病毒组装过程中的高效基因组包装以及感染性过程中的逆转录都很重要。SL1的预测二级结构由一个带有富含GC环的上部茎、一个下部茎以及一个中间凸起(G5、A24-G25-G26)组成,该凸起既严格保守,又对病毒基因组的有效包装至关重要。最近已经确定了上部茎在亲吻和双链二聚体形式中的结构。在这里,我们报告了一种工程化形式的SL1(SL1(m))的结构,它包含一个替代富含GC环的GAGA四环。该构建体不会聚集,在浓度高达1mM时仍保持单体状态,从而能够对完整的茎和凸起进行结构研究。使用1H-13C剩余偶极耦合对结构进行了优化。上部茎(C6-G12、C17-G23)与相关寡核糖核苷酸的亲吻和双链二聚体形式的X射线结构密切一致,核苷酸C1-G4和C27-G30形成了预期的A螺旋下部茎。预测凸起中的残基G5和A24形成一个与上部茎堆叠的G-A错配,残基G25和G26以在上部和下部茎之间产生一个中心孔以及25(±4)度弯曲的方式堆叠在G-A错配和下部茎之间。SL1(m)对HIV-1核衣壳蛋白的亲和力相对较差,这表明凸起在基因组包装中发挥其他作用。

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