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针对整个表达的人类免疫缺陷病毒1型(HIV-1)基因组的HIV-1特异性T细胞反应的综合表位分析显示出广泛的反应,但与病毒载量无关。

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.

作者信息

Addo M M, Yu X G, Rathod A, Cohen D, Eldridge R L, Strick D, Johnston M N, Corcoran C, Wurcel A G, Fitzpatrick C A, Feeney M E, Rodriguez W R, Basgoz N, Draenert R, Stone David R, Brander C, Goulder P J R, Rosenberg E S, Altfeld M, Walker B D

机构信息

Partners AIDS Research Center, Massachusetts General Hospital and Harvard Medical School. Fenway Community Health Center. Lemuel Shattuck Hospital, Boston, Massachusetts 02129, USA.

出版信息

J Virol. 2003 Feb;77(3):2081-92. doi: 10.1128/jvi.77.3.2081-2092.2003.

Abstract

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)/10(6) 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.

摘要

细胞免疫反应在控制1型人类免疫缺陷病毒(HIV-1)方面发挥着关键作用;然而,这些反应在单表位水平上的广度尚未得到全面评估。因此,我们使用涵盖所有表达的HIV-1蛋白的504个重叠肽矩阵,通过γ干扰素酶联免疫斑点(Elispot)试验,筛选了处于HIV-1感染不同阶段的57名个体的外周血单个核细胞(PBMC)中的病毒特异性T细胞反应。在所有研究对象中均检测到HIV-1特异性T细胞反应,每人靶向的单个表位区域中位数为14个(范围为2至42个),并且所有14个HIV-1蛋白亚基均被识别。HIV-1 p24-Gag和Nef的表位密度最高,也是最常被识别的HIV-1蛋白。在所有研究参与者中,HIV-1特异性反应的总量范围为280至25,860个斑点形成细胞(SFC)/10(6) PBMC(中位数为4,245)。然而,在测试个体中,靶向的表位区域数量、识别的蛋白亚基以及HIV-1特异性反应的总量差异显著,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反应。总的HIV-1特异性CD8 + T细胞反应的广度和强度均与血浆病毒载量无关。我们得出结论,基于肽矩阵的Elispot试验能够快速、灵敏、特异且高效地评估针对整个表达的HIV-1基因组的细胞免疫反应。这些数据还表明,即使应用全面的全基因组筛选方法,T细胞反应对病毒复制控制的影响也不能仅通过CD8 + T细胞反应的强度和广度的量化来解释。

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