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Smarter vaccine design will circumvent regulatory T cell-mediated evasion in chronic HIV and HCV infection

机译:更智能的疫苗设计将避免在慢性HIV和HCV感染中规管T细胞介导的逃避

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摘要

Despite years of research, vaccines against HIV and HCV are not yet available, due largely to effective viral immunoevasive mechanisms. A novel escape mechanism observed in viruses that cause chronic infection is suppression of viral-specific effector CD4+ and CD8+ T cells by stimulating regulatory T cells (Tregs) educated on host sequences during tolerance induction. Viral class II MHC epitopes that share a T cell receptor (TCR)-face with host epitopes may activate Tregs capable of suppressing protective responses. We designed an immunoinformatic algorithm, JanusMatrix, to identify such epitopes and discovered that among human-host viruses, chronic viruses appear more human-like than viruses that cause acute infection. Furthermore, an HCV epitope that activates Tregs in chronically infected patients, but not clearers, shares a TCR-face with numerous human sequences. To boost weak CD4+ T cell responses associated with persistent infection, vaccines for HIV and HCV must circumvent potential Treg activation that can handicap efficacy. Epitope-driven approaches to vaccine design that involve careful consideration of the T cell subsets primed during immunization will advance HIV and HCV vaccine development.
机译:尽管进行了多年的研究,但主要由于有效的病毒免疫逃逸机制,尚无法获得针对HIV和HCV的疫苗。在引起慢性感染的病毒中发现的一种新颖的逃逸机制是通过刺激宿主上的调节性T细胞(Treg)抑制病毒特异性效应子CD4 + 和CD8 + T细胞公差诱导过程中的序列。与宿主表位共有T细胞受体(TCR)面孔的II类MHC病毒表位可能会激活能够抑制保护性应答的Treg。我们设计了一种免疫信息学算法JanusMatrix来识别此类表位,并发现在人宿主病毒中,慢性病毒比引起急性感染的病毒更像人类。此外,在慢性感染患者中激活Treg而不是清除剂的HCV表位与许多人类序列共享TCR面孔。为了增强与持续感染相关的弱CD4 + T细胞反应,用于HIV和HCV的疫苗必须规避可能破坏功效的潜在Treg激活。由抗原决定簇驱动的疫苗设计方法,包括仔细考虑免疫过程中引发的T细胞亚群,将促进HIV和HCV疫苗的开发。

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