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通过深度测序评估针对结构相似或不相似 HLA-DP 抗原的同种反应性 T 细胞受体多样性。

Alloreactive T Cell Receptor Diversity against Structurally Similar or Dissimilar HLA-DP Antigens Assessed by Deep Sequencing.

机构信息

Institute for Experimental Cellular Therapy, University Hospital Essen, Essen, Germany.

Adaptive Biotechnologies, Seattle, WA, United States.

出版信息

Front Immunol. 2018 Feb 19;9:280. doi: 10.3389/fimmu.2018.00280. eCollection 2018.

Abstract

T cell alloreactivity is mediated by a self-human leukocyte antigen (HLA)-restricted T cell receptor (TCR) repertoire able to recognize both structurally similar and dissimilar allogeneic HLA molecules (i.e., differing by a single or several amino acids in their peptide-binding groove). We hypothesized that thymic selection on self-HLA molecules could have an indirect impact on the size and diversity of the alloreactive response. To test this possibility, we used TCR Vβ immunophenotyping and immunosequencing technology in a model of alloreactivity between self-HLA selected T cells and allogeneic HLA-DPB1 (DPB1) differing from self-DPB104:02 by a single (DPB102:01) or several (DPB109:01) amino acids in the peptide-binding groove. CD4+ T cells from three different self-DPB104:01,04:02 individuals were stimulated with HeLa cells stably transduced with the relevant peptide processing machinery, co-stimulatory molecules, and HLA-DP. Flow cytometric quantification of the DPB1-specific T cell response measured as upregulation of the activation marker CD137 revealed significantly lower levels of alloreactivity against DPB102:01 compared with DPB109:01 (mean CD4+CD137+ frequency 35.2 ± 9.9 vs. 61.5 ± 7.7%, respectively,  < 0.0001). These quantitative differences were, however, not reflected by differences in the breadth of the alloreactive response at the Vβ level, with both alloantigens eliciting specific responses from all TCR-Vβ specificities tested by flow cytometry, albeit with higher levels of reactivity from most Vβ specificities against DPB109:01. In line with these observations, -CDR3 immunosequencing showed no significant differences in mean clonality of sorted CD137+CD4+ cells alloreactive against DPB102:01 or DPB109:01 [0.39 (0.36-0.45) and 0.39 (0.30-0.46), respectively], or in the cumulative frequencies of the 10 most frequent responding clones (55-67 and 58-62%, respectively). Most of the clones alloreactive against DPB102:01 (68.3%) or DPB109:01 (75.3%) were characterized by low-abundance (i.e., they were not appreciable among the pre-culture T cells). Interestingly, however, their cumulative frequency was lower against DPB102:01 compared with DPB109:01 (mean cumulative frequency 35.3 vs. 50.6%, respectively). Our data show that, despite lower levels of alloreactivity, a similar clonal diversity can be elicited by structurally similar compared with structurally dissimilar HLA-DPB1 alloantigens and demonstrate the power of immunosequencing in unraveling subtle qualitative changes not appreciable by conventional methods.

摘要

T 细胞同种反应性由能够识别结构相似和不相似同种异体 HLA 分子(即在其肽结合槽中相差一个或几个氨基酸)的自身人类白细胞抗原(HLA)受限的 T 细胞受体(TCR)库介导。我们假设胸腺选择自身 HLA 分子可能对同种反应性的大小和多样性产生间接影响。为了验证这种可能性,我们使用 TCR Vβ免疫表型和免疫测序技术,在自身 HLA 选择的 T 细胞与同种异体 HLA-DPB1(DPB1)之间的同种反应性模型中进行研究,该模型与自身 DPB104:02 相比,在肽结合槽中相差一个(DPB102:01)或几个(DPB109:01)氨基酸。从三个不同的自身 DPB104:01、04:02 个体中分离的 CD4+T 细胞用稳定转导相关肽处理机制、共刺激分子和 HLA-DP 的 HeLa 细胞刺激。流式细胞术定量测定 CD137 上调所揭示的 DPB1 特异性 T 细胞反应表明,与 DPB109:01 相比,针对 DPB102:01 的同种反应性水平显著降低(分别为 CD4+CD137+频率 35.2 ± 9.9%和 61.5 ± 7.7%, < 0.0001)。然而,在 Vβ 水平的同种反应性广度方面,这些定量差异并未反映出来,两种同种抗原均通过流式细胞术检测到所有 TCR-Vβ 特异性的特异性反应,尽管大多数 Vβ 特异性对 DPB109:01 的反应水平更高。与这些观察结果一致,-CDR3 免疫测序显示,针对 DPB102:01 或 DPB109:01 的分选 CD137+CD4+细胞的同种反应性的平均克隆性没有显著差异[0.39(0.36-0.45)和 0.39(0.30-0.46)],或在 10 个最频繁反应的克隆的累积频率方面也没有差异(分别为 55-67%和 58-62%)。针对 DPB102:01(68.3%)或 DPB109:01(75.3%)的同种反应性克隆大多以低丰度为特征(即在预培养 T 细胞中并不明显)。有趣的是,然而,与 DPB109:01 相比,它们的累积频率在 DPB102:01 中较低(分别为 35.3%和 50.6%)。我们的数据表明,尽管同种反应性水平较低,但结构相似的 HLA-DPB1 同种抗原可以引起类似的克隆多样性,并证明免疫测序在揭示常规方法无法察觉的细微定性变化方面的强大功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2a1/5827552/5224279b4dc8/fimmu-09-00280-g001.jpg

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