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Broad CTL response is required to clear latent HIV-1 due to dominance of escape mutations

机译:由于逃逸突变的优势需要广泛的CTL反应来清除潜在的HIV-1

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摘要

Despite antiretroviral therapy (ART), HIV-1 persists in a stable latent reservoir, , primarily in resting memory CD4+ T cells, . This reservoir presents a major barrier to the cure of HIV-1 infection. To purge the reservoir, pharmacological reactivation of latent HIV-1 has been proposed and tested both in vitro and in vivo. A key remaining question is whether virus-specific immune mechanisms including cytolytic T lymphocytes (CTL) can clear infected cells in ART-treated patients after latency is reversed. Here we show that there is a striking all or none pattern for CTL escape mutations in HIV-1 Gag epitopes. Unless ART is started early, the vast majority (>98%) of latent viruses carry CTL escape mutations that render infected cells insensitive to CTLs directed at common epitopes. To solve this problem, we identified CTLs that could recognize epitopes from latent HIV-1 that were unmutated in every chronically infected patient tested. Upon stimulation, these CTLs eliminated target cells infected with autologous virus derived from the latent reservoir, both in vitro and in patient-derived humanized mice. The predominance of CTL-resistant viruses in the latent reservoir poses a major challenge to viral eradication. Our results demonstrate that chronically infected patients retain a broad spectrum viral-specific CTL response and that appropriate boosting of this response may be required for the elimination of the latent reservoir.
机译:尽管进行了抗逆转录病毒疗法(ART),HI​​V-1仍保留在稳定的潜伏水库 中,主要存在于静息记忆CD4 + T细胞 中。该储存库为治愈HIV-1感染提供了主要障碍。为了清除储层,已提出了潜伏HIV-1的药理学活化 ,并在体内和体外进行了测试[sup>-。剩下的关键问题是,潜伏期逆转后,包括溶细胞性T淋巴细胞(CTL)在内的病毒特异性免疫机制是否可以清除ART治疗患者的感染细胞。在这里,我们显示,HIV-1 Gag表位中的CTL逃逸突变具有惊人的全部或完全没有模式。除非早期开展抗逆转录病毒治疗,否则绝大多数(> 98%)潜伏病毒携带CTL逃逸突变,使被感染的细胞对针对共同表位的CTL不敏感。为了解决此问题,我们确定了可以识别潜在HIV-1抗原决定簇的CTL,这些抗原决定簇在每个接受测试的慢性感染患者中均未突变。刺激后,这些CTL在体外和患者来源的人源化小鼠中均消除了感染了潜伏性储库的自体病毒感染的靶细胞。在潜在的储库中,抗CTL的病毒占主导地位对根除病毒构成了重大挑战。我们的结果表明,慢性感染的患者保留了广谱的病毒特异性CTL反应,并且可能需要适当增强这种反应才能消除潜在的储库。

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