Manzourolajdad Amirhossein, Gonzalez Mileidy, Spouge John L
National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, Maryland, United States of America.
PLoS One. 2016 Sep 29;11(9):e0163688. doi: 10.1371/journal.pone.0163688. eCollection 2016.
Because of a high mutation rate, HIV exists as a viral swarm of many sequence variants evolving under various selective pressures from the human immune system. Although the Nef gene codes for the most immunogenic of HIV accessory proteins, which alone makes it of great interest to HIV research, it also encodes an RNA structure, whose contribution to HIV virulence has been largely unexplored. Nef RNA helps HIV escape RNA interference (RNAi) through nucleotide changes and alternative folding. This study examines Historic and Modern Datasets of patient HIV-1 Nef sequences during the evolution of the North American epidemic for local changes in RNA plasticity. By definition, RNA plasticity refers to an RNA molecule's ability to take alternative folds (i.e., alternative conformations). Our most important finding is that an evolutionarily conserved region of the HIV-1 Nef gene, which we denote by R2, recently underwent a statistically significant increase in its RNA plasticity. Thus, our results indicate that Modern Nef R2 typically accommodates an alternative fold more readily than Historic Nef R2. Moreover, the increase in RNA plasticity resides mostly in synonymous nucleotide changes, which cannot be a response to selective pressures on the Nef protein. R2 may therefore be of interest in the development of antiviral RNAi therapies.
由于高突变率,HIV以许多序列变体的病毒群体形式存在,在来自人类免疫系统的各种选择压力下进化。尽管Nef基因编码HIV辅助蛋白中最具免疫原性的蛋白,这一点本身就使其成为HIV研究的重要对象,但它还编码一种RNA结构,其对HIV毒力的贡献在很大程度上尚未得到探索。Nef RNA通过核苷酸变化和可变折叠帮助HIV逃避RNA干扰(RNAi)。本研究检查了北美流行演变期间患者HIV-1 Nef序列的历史和现代数据集,以了解RNA可塑性的局部变化。根据定义,RNA可塑性是指RNA分子采取可变折叠(即可变构象)的能力。我们最重要的发现是,HIV-1 Nef基因的一个进化保守区域(我们将其表示为R2)最近在其RNA可塑性方面经历了统计学上的显著增加。因此,我们的结果表明,现代Nef R2通常比历史Nef R2更容易容纳可变折叠。此外,RNA可塑性的增加主要存在于同义核苷酸变化中,这不可能是对Nef蛋白选择压力的反应。因此,R2可能在抗病毒RNAi疗法的开发中具有重要意义。