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介导移植排斥反应的、针对单个间接同种异体抗原表位(I-Ab/H-2Kd54-68)的T细胞克隆的异质性。

Heterogeneity of T cell clones specific for a single indirect alloantigenic epitope (I-Ab/H-2Kd54-68) that mediate transplant rejection.

作者信息

Honjo K, Xu X Y, Bucy R P

机构信息

Department of Pathology, University of Alabama at Birmingham, 35233-7331, USA.

出版信息

Transplantation. 2000 Nov 27;70(10):1516-24. doi: 10.1097/00007890-200011270-00020.

Abstract

BACKGROUND

One of the complexities of solid organ allograft rejection is the inherent diversity of the specific T cell antigenic epitopes that participate in this response, including the role of direct alloantigen recognition and indirect recognition of donor-derived peptides in recipient antigen-presenting cells. To probe the role of distinct T cell receptor (TCR) avidity differences and the role of cytokine expression patterns of different effector T cells that may participate in allograft rejections, we have identified a dominant allopeptide derived from the H-2Kd molecule, recognized by H-2b CD4 T cells in the context of syngeneic I-Ab.

METHODS

To identify a stimulatory peptide derived from the H-2Kd molecule, a panel of synthetic overlapping peptides was screened for immunogenicity and a panel of T cell clones established. These clones were characterized for TCR Vbeta usage by mAb staining and/or reverse transcribed-polymerase chain reaction analysis, peptide dose sensitivity as a marker of TCR avidity, cytokine expression phenotype in vitro, and their ability to mediate rejection of a vascularized cardiac allograft after adoptive transfer to immunodeficient mice.

RESULTS

The H-2Kd54-68 peptide was identified as a dominant stimulatory peptide by the ability of T cells from C57BL/6 (H-2b) mice primed by a combination of allogeneic spleen cell injection and mixed peptide immunization to mount an in vitro proliferative response and interferon-gamma production by peptide stimulation. Furthermore, direct immunization with synthetic H-2Kd54-68 peptide of normal C57BL/6 mice resulted in accelerated rejection of both skin and cardiac allografts from B10.D2 (H-2d) mice, but not 3rd party B10.BR (H-2k) grafts. A panel of 15 distinct CD4+ clones specific for H-2Kd54-68 peptide were established and shown to utilize a variety of TCR Vbeta and different apparent TCR avidities to H-2Kd54-68 peptide when stimulated in vitro. To characterize these clones further, two clones were chosen based on the difference of avidity to H-2Kd54-68 peptide. The cytokine expression pattern was determined and indirect alloantigen specificity confirmed by analysis of responses to purified peptide and B10.D2 spleen cells using normal H.2b and I-Abeta chain knockout mice as APC donors. Both of these T cell clones were able to mediate rejection of B10.D2, but not B10.BR hearts, in immunodeficient mice, but the morphological pattern of T cell infiltration was distinct.

CONCLUSIONS

These results demonstrate the potential importance of fine dissection of the alloantigeneic response to solid organ transplants and provide unique insights into the role of TCR avidity and cytokine expression patterns in different morphological patterns of transplant rejection.

摘要

背景

实体器官同种异体移植排斥反应的复杂性之一在于参与该反应的特异性T细胞抗原表位具有内在多样性,包括直接同种抗原识别以及受体抗原呈递细胞中间接识别供体来源肽段的作用。为探究不同T细胞受体(TCR)亲和力差异的作用以及可能参与同种异体移植排斥反应的不同效应T细胞细胞因子表达模式的作用,我们鉴定出一种源自H-2Kd分子的显性别构肽,其在同基因I-Ab背景下可被H-2b CD4 T细胞识别。

方法

为鉴定源自H-2Kd分子的刺激肽,筛选一组合成重叠肽的免疫原性,并建立一组T细胞克隆。通过单克隆抗体染色和/或逆转录-聚合酶链反应分析对这些克隆的TCR Vβ使用情况进行表征,将肽剂量敏感性作为TCR亲和力的标志物,在体外测定细胞因子表达表型,以及在将其过继转移至免疫缺陷小鼠后介导血管化心脏同种异体移植排斥反应的能力。

结果

通过用同种异体脾细胞注射和混合肽免疫联合免疫的C57BL/6(H-2b)小鼠的T细胞经肽刺激后产生体外增殖反应和干扰素-γ的能力,将H-2Kd54-68肽鉴定为显性刺激肽。此外,用合成的H-2Kd54-68肽直接免疫正常C57BL/6小鼠,导致来自B10.D2(H-2d)小鼠的皮肤和心脏同种异体移植加速排斥,但对第三方B10.BR(H-2k)移植物无此作用。建立了一组15个对H-2Kd54-68肽特异的不同CD4+克隆,并显示在体外刺激时对H-2Kd54-68肽利用多种TCR Vβ且具有不同的表观TCR亲和力。为进一步表征这些克隆,根据对H-2Kd54-68肽亲和力的差异选择了两个克隆。通过使用正常H.2b和I-Aβ链敲除小鼠作为抗原呈递细胞供体,分析对纯化肽和B10.D2脾细胞的反应来确定细胞因子表达模式并确认间接同种抗原特异性。这两个T细胞克隆均能够在免疫缺陷小鼠中介导B10.D2而非B10.BR心脏的排斥,但T细胞浸润的形态模式不同。

结论

这些结果证明了精细剖析对实体器官移植的同种异体抗原反应的潜在重要性,并为TCR亲和力和细胞因子表达模式在移植排斥不同形态模式中的作用提供了独特见解。

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