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使用抗T细胞受体γ可变区血清鉴定不同的T细胞受体(TCR)-γδ异二聚体。

Identification of distinct T cell receptor (TCR)-gamma delta heterodimers using an anti-TCR-gamma variable region serum.

作者信息

Cron R Q, Ezquerra A, Coligan J E, Houlden B A, Bluestone J A, Maloy W L

机构信息

University of Chicago, Ben May Institute, IL 60637.

出版信息

J Immunol. 1989 Dec 1;143(11):3769-75.

PMID:2479690
Abstract

T cell hybridomas were generated from CD3+, CD4-, CD8- splenocytes and fetal thymocytes. V gamma 1-expressing proteins present on these murine TCR-gamma delta hybridomas were identified by using an anti-TCR V gamma 1 peptide serum. This antiserum specifically immunoprecipitated 41-kDa TCR V gamma-C gamma 4 chains and 31-kDa TCR V gamma-C gamma 1/2 chains from distinct heterodimers expressed on the TCR-gamma delta T cell hybridomas. The RNA from a hybridoma with a 31-kDa TCR-gamma chain hybridized with a V gamma 1 probe but failed to hybridize with a V gamma 2 probe. In contrast, the RNA from a hybridoma with a 32-kDa TCR-gamma chain hybridized with a V gamma 2 probe. This 32-kDa TCR-gamma chain was not immunoprecipitated by the anti-V gamma 1 serum. These data were consistent with the conclusion that the 31-kDa protein was the product of a V gamma 1 to C gamma 2 rearrangement, whereas the 32-kDa protein was the product of a V gamma 2 to C gamma 1 rearrangement. Furthermore, Southern analyses confirmed that the 32-kDa protein was the product of a V gamma 1.2-J gamma 2 rearrangement, and all three of the 41-kDa TCR-gamma chains were the results of V gamma 1.1-J gamma 4 rearrangements. This was the first demonstration at the clonal level of TCR-gamma proteins which use members of the V gamma 1 gene family, as well as the C gamma 2 constant region. Additional biochemical analyses of the TCR-gamma and -delta proteins from three independently derived C gamma 4-bearing T cell hybridomas suggested that most of the molecular mass diversity observed in the bulk subpopulation of peripheral C gamma 4-containing heterodimers may be contributed by the TCR-delta chains.

摘要

T细胞杂交瘤由CD3⁺、CD4⁻、CD8⁻脾细胞和胎胸腺细胞产生。通过使用抗TCR Vγ1肽血清鉴定了这些小鼠TCR-γδ杂交瘤上存在的表达Vγ1的蛋白。该抗血清从TCR-γδ T细胞杂交瘤上表达的不同异源二聚体中特异性免疫沉淀出41 kDa的TCR Vγ-Cγ4链和31 kDa的TCR Vγ-Cγ1/2链。来自具有31 kDa TCR-γ链的杂交瘤的RNA与Vγ1探针杂交,但未与Vγ2探针杂交。相反,来自具有32 kDa TCR-γ链的杂交瘤的RNA与Vγ2探针杂交。这种32 kDa的TCR-γ链未被抗Vγ1血清免疫沉淀。这些数据与以下结论一致:31 kDa蛋白是Vγ1至Cγ2重排的产物,而32 kDa蛋白是Vγ2至Cγ1重排的产物。此外,Southern分析证实32 kDa蛋白是Vγ1.2-Jγ2重排的产物,所有三条41 kDa的TCR-γ链都是Vγ1.1-Jγ4重排的结果。这是在克隆水平上首次证明使用Vγ1基因家族成员以及Cγ2恒定区的TCR-γ蛋白。对来自三个独立衍生的含Cγ4的T细胞杂交瘤的TCR-γ和-δ蛋白的进一步生化分析表明,在外周含Cγ4的异源二聚体的大量亚群中观察到的大部分分子量多样性可能由TCR-δ链贡献。

相似文献

1
Identification of distinct T cell receptor (TCR)-gamma delta heterodimers using an anti-TCR-gamma variable region serum.使用抗T细胞受体γ可变区血清鉴定不同的T细胞受体(TCR)-γδ异二聚体。
J Immunol. 1989 Dec 1;143(11):3769-75.
2
Peripheral murine CD3+, CD4-, CD8- T lymphocytes express novel T cell receptor gamma delta structures.外周小鼠CD3 +、CD4 -、CD8 - T淋巴细胞表达新型T细胞受体γδ结构。
J Immunol. 1988 Aug 15;141(4):1074-82.
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A novel gamma delta T cell receptor for antigen adds limited diversity to the gamma delta repertoire in adult thymus.一种新型的抗原γδ T细胞受体为成年胸腺中的γδ细胞库增加了有限的多样性。
J Immunol. 1989 Jan 1;142(1):28-34.
4
Activation properties of T cell receptor-gamma delta hybridomas expressing diversity in both gamma- and delta-chains.在γ链和δ链均表现出多样性的T细胞受体γδ杂交瘤的激活特性
J Immunol. 1988 Jan 15;140(2):411-8.
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Systematic development of distinct T cell receptor-gamma delta T cell subsets during fetal ontogeny.在胎儿发育过程中不同T细胞受体γδ T细胞亚群的系统性发育。
J Immunol. 1988 Dec 1;141(11):3753-9.
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T cell receptor-gamma and -delta genes preferentially utilized by adult thymocytes for the surface expression.成年胸腺细胞优先用于表面表达的T细胞受体γ和δ基因。
J Immunol. 1989 Mar 15;142(6):2112-21.
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T cell receptor delta-gene expression and diversity in the mouse spleen.小鼠脾脏中T细胞受体δ基因的表达与多样性
J Immunol. 1990 Sep 1;145(5):1311-7.
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Allelic differences in TCR gamma-chains alter gamma delta T cell antigen reactivity.TCRγ链中的等位基因差异会改变γδT细胞的抗原反应性。
J Immunol. 1994 Aug 15;153(4):1455-65.
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Expression of human T cell receptor-gamma delta structural forms.人类T细胞受体γδ结构形式的表达
J Immunol. 1989 May 15;142(10):3627-33.
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Analysis of T cell receptor gamma chains from adult CD4- CD8- thymocytes.成年CD4-CD8-胸腺细胞T细胞受体γ链的分析
Eur J Immunol. 1989 Aug;19(8):1501-4. doi: 10.1002/eji.1830190824.

引用本文的文献

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Reduced CD5 on CD8 T Cells in Tumors but Not Lymphoid Organs Is Associated With Increased Activation and Effector Function.肿瘤中 CD8 T 细胞上的 CD5 减少,但淋巴器官中没有,这与 T 细胞的活化和效应功能增强有关。
Front Immunol. 2021 Jan 28;11:584937. doi: 10.3389/fimmu.2020.584937. eCollection 2020.
2
CD154 transcriptional regulation in primary human CD4 T cells.原代人CD4 T细胞中CD154的转录调控
Immunol Res. 2003;27(2-3):185-202. doi: 10.1385/IR:27:2-3:185.
3
Ordered rearrangement of variable region genes of the T cell receptor gamma locus correlates with transcription of the unrearranged genes.
T细胞受体γ基因座可变区基因的有序重排与未重排基因的转录相关。
J Exp Med. 1993 Mar 1;177(3):729-39. doi: 10.1084/jem.177.3.729.
4
Polymorphisms and diversity of T-cell receptor-gamma proteins expressed in mouse spleen.
Immunogenetics. 1990;31(4):220-8. doi: 10.1007/BF00204891.
5
Junctional sequences influence the specificity of gamma/delta T cell receptors.连接序列影响γ/δ T细胞受体的特异性。
J Exp Med. 1991 Feb 1;173(2):503-6. doi: 10.1084/jem.173.2.503.
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Secretion of a soluble, chimeric gamma delta T-cell receptor-immunoglobulin heterodimer.可溶性嵌合γδ T细胞受体-免疫球蛋白异二聚体的分泌
Proc Natl Acad Sci U S A. 1992 Aug 1;89(15):6871-5. doi: 10.1073/pnas.89.15.6871.