首页> 美国卫生研究院文献>Journal of Virology >Comprehensive Epitope Analysis of Human Immunodeficiency Virus Type 1 (HIV-1)-Specific T-Cell Responses Directed against the Entire Expressed HIV-1 Genome Demonstrate Broadly Directed Responses but No Correlation to Viral Load
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Comprehensive Epitope Analysis of Human Immunodeficiency Virus Type 1 (HIV-1)-Specific T-Cell Responses Directed against the Entire Expressed HIV-1 Genome Demonstrate Broadly Directed Responses but No Correlation to Viral Load

机译:针对针对整个表达的HIV-1基因组的人类免疫缺陷病毒1型(HIV-1)特异性T细胞反应的综合抗原决定簇分析显示了广泛的应答反应但与病毒载量没有相关性

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摘要

Cellular immune responses play a critical role in the control of human immunodeficiency virus type 1 (HIV-1); however, the breadth of these responses at the single-epitope level has not been comprehensively assessed. We therefore screened peripheral blood mononuclear cells (PBMC) from 57 individuals at different stages of HIV-1 infection for virus-specific T-cell responses using a matrix of 504 overlapping peptides spanning all expressed HIV-1 proteins in a gamma interferon-enzyme-linked immunospot (Elispot) assay. HIV-1-specific T-cell responses were detectable in all study subjects, with a median of 14 individual epitopic regions targeted per person (range, 2 to 42), and all 14 HIV-1 protein subunits were recognized. HIV-1 p24-Gag and Nef contained the highest epitope density and were also the most frequently recognized HIV-1 proteins. The total magnitude of the HIV-1-specific response ranged from 280 to 25,860 spot-forming cells (SFC)/106 PBMC (median, 4,245) among all study participants. However, the number of epitopic regions targeted, the protein subunits recognized, and the total magnitude of HIV-1-specific responses varied significantly among the tested individuals, with the strongest and broadest responses detectable in individuals with untreated chronic HIV-1 infection. Neither the breadth nor the magnitude of the total HIV-1-specific CD8+-T-cell responses correlated with plasma viral load. We conclude that a peptide matrix-based Elispot assay allows for rapid, sensitive, specific, and efficient assessment of cellular immune responses directed against the entire expressed HIV-1 genome. These data also suggest that the impact of T-cell responses on control of viral replication cannot be explained by the mere quantification of the magnitude and breadth of the CD8+-T-cell response, even if a comprehensive pan-genome screening approach is applied.
机译:细胞免疫应答在控制人类1型免疫缺陷病毒(HIV-1)中起着至关重要的作用。然而,这些反应在单表位水平的广度尚未得到全面评估。因此,我们使用504个重叠的肽矩阵来筛选HIV-1感染不同阶段的57名处于HIV-1感染不同阶段的个体的外周血单核细胞(PBMC),这些肽跨越了γ-干扰素-酶中所有表达的HIV-1蛋白的504个重叠肽。连锁免疫斑点(Elispot)分析。在所有研究对象中均可检测到HIV-1特异性T细胞反应,每人靶向的中位14个独立抗原决定区域的中位数(范围为2至42),并且识别了所有14个HIV-1蛋白亚基。 HIV-1 p24-Gag和Nef包含最高的表位密度,并且也是最常被识别的HIV-1蛋白。在所有研究参与者中,HIV-1特异性应答的总大小范围为280至25,860个点形成细胞(SFC)/ 10 6 PBMC(中位数为4,245)。然而,在测试的个体中,靶向的抗原决定簇区域的数量,识别的蛋白质亚基以及HIV-1特异性应答的总强度差异很大,在未经治疗的慢性HIV-1感染个体中可检测到最强和最广泛的应答。总HIV-1特异性CD8 + -T细胞反应的广度和大小均与血浆病毒载量无关。我们得出结论,基于肽基质的Elispot分析可快速,灵敏,特异和有效地评估针对整个表达的HIV-1基因组的细胞免疫应答。这些数据还表明,即使仅对CD8 + -T细胞应答的大小和广度进行量化,也无法解释T细胞应答对病毒复制控制的影响。应用全基因组筛选方法。

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