Identification of new circulating recombinant form of HIV-1 CRF139_02B in Japan, and search for the origin.

IF 1.9 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Global health & medicine Pub Date : 2024-10-31 DOI:10.35772/ghm.2024.01047
Tsunefusa Hayashida, Kiyoto Tsuchiya, Shinichi Oka, Hiroyuki Gatanaga
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Abstract

Many circulating recombinant forms (CRFs) of HIV-1 have been reported, resulting in complex molecular epidemiology of HIV-1 infection. In this study, we newly identified CRF139_02B in Japan from 4 cases of anti-retroviral therapy naïve people living with HIV. Near full-length genome sequences of CRF139_02B were determined using Illumina MiSeq. Basic Local Alignment Search Tool (BLAST) revealed that there were several sequences having the same breakpoints as CRF139_02B in the UK and Nepal, though its full-length genome sequences were not available. Maximum clade credibility tree analysis using the region of protease and reverse transcriptase of HIV- 1 estimated that the time to the most recent common ancestor of CRF139_02B variants found in Japan was 2017.6 (95% highest posterior density interval: 2015.9-2019.3), and that among the UK, Nepal, and Japan was 2010.4 (2007.8- 2012.5). These results suggested that CRF139_02B circulated in Japan recently and domestically. Furthermore, the origin of CRF139_02B could be in the UK. Because there is a possibility that further international circulation of CRF139_02B may be observed in the near future, continuous monitoring of HIV-1 molecular epidemiology will be needed.

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在日本发现新的 HIV-1 CRF139_02B 循环重组形式,并寻找其来源。
据报道,HIV-1 的许多循环重组形式(CRFs)导致了复杂的 HIV-1 感染分子流行病学。在本研究中,我们在日本从 4 例抗逆转录病毒疗法未激活的 HIV 感染者中新发现了 CRF139_02B。我们使用 Illumina MiSeq 测定了 CRF139_02B 的近全长基因组序列。基本局部比对搜索工具(BLAST)显示,在英国和尼泊尔有几个与 CRF139_02B 具有相同断点的序列,尽管其全长基因组序列不可用。利用HIV- 1的蛋白酶和逆转录酶区域进行的最大宗族可信度树分析估计,在日本发现的CRF139_02B变异的最近共同祖先时间为2017.6(95%最高后密度区间:2015.9-2019.3),而在英国、尼泊尔和日本发现的CRF139_02B变异的最近共同祖先时间为2010.4(2007.8- 2012.5)。这些结果表明,CRF139_02B最近在日本国内流行。此外,CRF139_02B 的原产地可能在英国。由于在不久的将来有可能观察到 CRF139_02B 的进一步国际传播,因此需要对 HIV-1 分子流行病学进行持续监测。
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