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SIV Genome-Wide Pyrosequencing Provides a Comprehensive and Unbiased View of Variation within and outside CD8 T Lymphocyte Epitopes

机译:sIV基因组范围的焦磷酸测序提供内和CD8 T细胞表位之外的变化的全面客观查看

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摘要

Deep sequencing technology is revolutionizing our understanding of HIV/SIV evolution. It is known that acute SIV sequence variation within CD8 T lymphocyte (CD8-TL) epitopes is similar among MHC-identical animals, but we do not know whether this persists into the chronic phase. We now determine whether chronic viral variation in MHC-identical animals infected with clonal SIV is similar throughout the entire coding sequence when using a sensitive deep sequencing approach. We pyrosequenced the entire coding sequence of the SIV genome isolated from a unique cohort of four SIVmac239-infected, MHC-identical Mauritian cynomolgus macaques (MCM) 48 weeks after infection; one MCM in the cohort became an elite controller. Among the three non-controllers, we found that genome-wide sequences were similar between animals and we detected increased sequence complexity within 64% of CD8-TL epitopes when compared to Sanger sequencing methods. When we compared sequences between the MHC-matched controller and the three non-controllers, we found the viral population in the controller was less diverse and accumulated different variants than the viral populations in the non-controllers. Importantly, we found that initial PCR amplification of viral cDNA did not significantly affect the sequences detected, suggesting that data obtained by pyrosequencing PCR-amplified viral cDNA accurately represents the diversity of sequences replicating within an animal. This demonstrates that chronic sequence diversity across the entire SIV coding sequence is similar among MHC-identical animals with comparable viral loads when infected with the same clonal virus stock. Additionally, our approach to genome-wide SIV sequencing accurately reflects the diversity of sequences present in the replicating viral population. In sum, our study suggests that genome-wide pyrosequencing of immunodeficiency viruses captures a thorough and unbiased picture of sequence diversity, and may be a useful approach to employ when evaluating which sequences to include as part of a vaccine immunogen.
机译:深度测序技术正在彻底改变我们对HIV / SIV进化的理解。已知在MHC相同的动物中,CD8 T淋巴细胞(CD8-TL)表位中的急性SIV序列变异相似,但我们不知道这种情况是否持续到慢性期。现在,我们使用敏感的深度测序方法确定在感染了克隆SIV的MHC相同动物中的慢性病毒变异在整个编码序列中是否相似。我们对感染后48周内从四个SIVmac239感染,MHC相同的毛里求斯食蟹猕猴(MCM)的唯一队列中分离出的SIV基因组的整个编码序列进行了测序。该队列中的一个MCM成为精英控制者。在这三个非控制器中,我们发现动物之间的全基因组序列相似,并且与Sanger测序方法相比,我们检测到CD8-TL表位中64%的序列复杂性增加。当我们比较MHC匹配的控制者和三个非控制者之间的序列时,我们发现控制者中的病毒种群比非控制者中的病毒种群少,并且积累了不同的变异。重要的是,我们发现病毒cDNA的初始PCR扩增不会显着影响所检测到的序列,这表明通过焦磷酸测序PCR扩增的病毒cDNA获得的数据准确地代表了在动物体内复制的序列的多样性。这表明,当感染了相同的克隆病毒原种时,在具有相同病毒载量的MHC相同动物之间,整个SIV编码序列的慢性序列多样性是相似的。此外,我们用于全基因组SIV测序的方法准确反映了复制病毒种群中存在的序列的多样性。总而言之,我们的研究表明,免疫缺陷病毒的全基因组焦磷酸测序可以完整而公正地捕获序列多样性,并且在评估哪些序列作为疫苗免疫原的一部分时可能是有用的方法。

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