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Estimating HIV Evolutionary Pathways and the Genetic Barrier to Drug Resistance.

机译:估计艾滋病毒的进化途径和耐药性的遗传障碍。

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Background. The evolution of drug-resistant viruses challenges the management of human immunodeficiency virus (HIV) infections. Understanding this evolutionary process is important for the design of effective therapeutic strategies.Methods. We used mutagenetic trees, a family of probabilistic graphical models, to describe the accumulation of resistance-associated mutations in the viral genome. On the basis of these models, we defined the genetic barrier, a quantity that summarizes the difficulty for the virus to escape from the selective pressure of the drug by developing escape mutations.Results. From HIV reverse-transcriptase sequences that had been obtained from treated patients, we derived evolutionary models for zidovudine, zidovudine plus lamivudine, and zidovudine plus didanosine. The genetic barriers to resistance to zidovudine, stavudine, lamivudine, and didanosine, for the above 3 regimens, were computed and analyzed. We found both the mode and the rate of development of resistance to be heterogeneous. The genetic barrier to zidovudine resistance was increased if lamivudine was added to zidovudine but was decreased for didanosine. The barrier to lamivudine resistance was maintained with zidovudine plus didanosine, whereas the barrier to didanosine resistance was reduced most with zidovudine plus lamivudine.Conclusion. Mutagenetic trees provide a quantitative picture of the evolution of drug resistance. The genetic barrier is a useful tool for design of effective treatment strategies.
机译:背景。耐药病毒的进化挑战了人类免疫缺陷病毒(HIV)感染的管理。了解这一进化过程对于设计有效的治疗策略非常重要。我们使用了突变图形树(概率图形模型家族)来描述病毒基因组中与耐药相关的突变的积累。在这些模型的基础上,我们定义了遗传壁垒,这一数量概括了病毒通过发展逃逸突变而难以从药物的选择压力中逃脱的结果。从已从治疗患者中获得的HIV逆转录酶序列,我们得出齐多夫定,齐多夫定加拉米夫定,齐多夫定加二羟肌苷的进化模型。计算并分析了上述三种方案对齐多夫定,司他夫定,拉米夫定和去羟肌苷的耐药性的遗传障碍。我们发现抗性的模式和发生率都是异质的。如果将拉米夫定添加到齐多夫定中,则对齐多夫定耐药性的遗传障碍会增加,而对于去羟肌苷则会降低。齐多夫定加二羟肌苷维持对拉米夫定耐药的屏障,齐多夫定加拉米夫定可使对拉达夫定耐药性的屏障降低最多。诱变树提供了耐药性演变的定量描述。遗传障碍是设计有效治疗策略的有用工具。

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