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人类免疫缺陷病毒(HIV-I)中RNA茎环结构的稳定性及非随机结构的分布

Stability of RNA stem-loop structure and distribution of non-random structure in the human immunodeficiency virus (HIV-I).

作者信息

Le S Y, Chen J H, Braun M J, Gonda M A, Maizel J V

机构信息

Division of Cancer Biology and Diagnosis, National Cancer Institute, Frederick, MD 21701.

出版信息

Nucleic Acids Res. 1988 Jun 10;16(11):5153-68. doi: 10.1093/nar/16.11.5153.

Abstract

The stability of potential RNA stem-loop structures in human immunodeficiency virus isolates, HTLV-III and ARV, has been calculated, and the relevance to the local significant secondary structures in the sequence has been tested statistically using a Monte Carlo simulation method. Potentially significant structures exist in the 5'non-coding region, the boundary regions between the protein coding frames, and the 3' non-coding region. The locally optimal secondary structure occurring in the 5' terminal region has been assessed using different overlapping segment sizes and the Monte Carlo method. The results show that the most favorable structure for the 5' mRNA leader sequence of HIV has two stem-loops folded at nucleotides 5-104 in the R region (stem-loop I, 5-54 and stem-loop II, 58-104). A large fluctuation of segment score of the local optimal secondary structure also occurs in the boundary between the exterior glycosylated protein or outer membrane protein and transmembrane protein coding region. This finding is surprising since no RNA signals or RNA processing are expected to occur at this site. In addition, regions of the genome predicted to have significantly more open structure at the RNA level correlate closely with hypervariable sites found in these viral genomes. The possible importance of local secondary structure to the biological function of the human immunodeficiency virus genome is discussed.

摘要

已计算出人类免疫缺陷病毒分离株HTLV - III和ARV中潜在RNA茎环结构的稳定性,并使用蒙特卡罗模拟方法对其与序列中局部重要二级结构的相关性进行了统计学检验。在5'非编码区、蛋白质编码框架之间的边界区域以及3'非编码区存在潜在的重要结构。已使用不同的重叠片段大小和蒙特卡罗方法评估了5'末端区域出现的局部最优二级结构。结果表明,HIV的5'mRNA前导序列最有利的结构在R区域的核苷酸5 - 104处有两个茎环(茎环I,5 - 54;茎环II,58 - 104)。在外部糖基化蛋白或外膜蛋白与跨膜蛋白编码区域之间的边界处,局部最优二级结构的片段得分也出现了较大波动。这一发现令人惊讶,因为预计该位点不会发生RNA信号或RNA加工。此外,基因组中预测在RNA水平具有明显更多开放结构的区域与这些病毒基因组中发现的高变位点密切相关。讨论了局部二级结构对人类免疫缺陷病毒基因组生物学功能的可能重要性。

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