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采用微孔板杂交分析法分析健康个体的TCRαV和TCRβV基因库。

Analysis of TCRAV and TCRBV repertoires in healthy individuals by microplate hybridization assay.

作者信息

Matsutani T, Yoshioka T, Tsuruta Y, Iwagami S, Suzuki R

机构信息

Shionogi Diagnostic Science Dept., Shionogi & Co., Ltd., Osaka, Japan.

出版信息

Hum Immunol. 1997 Aug-Sep;56(1-2):57-69. doi: 10.1016/s0198-8859(97)00102-x.

Abstract

We have developed an adaptor ligation PCR-based microplate hybridization assay (MHA) for analysis of T cell receptor alpha chain variable region (TCRAV) and T cell receptor beta chain variable region (TCRBV) repertoires. Forty three TCRAV and thirty eight TCRBV-specific probes were immobilized onto microplate wells in water-soluble carbodiimide. After hybridization of 5'-biotinylated PCR products, quantitative ELISA was carried out and followed by automated colorimetric reading. The conditions for immobilization and hybridization were optimized using representative TCRBV-specific probes. The sensitivity of MHA allows us to detect as low as 40 pg of biotinylated PCR products. The frequencies of individual V segments obtained by MHA were consistent with those obtained by FACS analysis and reverse dot blot assays. Analysis of the entire TCRAV and TCRBV repertoires could be done using a single 96-well plate, and completed in less than 6 h. Simplicity and reproducibility of this method make it suitable for routine laboratory use. The expression of TCRAV and TCRBV segments was next studied in peripheral blood mononuclear cells (PBMC) of 14 healthy donors using the newly developed MHA method. TCRAV8S1, TCRAV23S1, TCRBV2S1, TCRBV3S1, TCRBV4S1, and TCRBV6S5 were highly expressed in PBMC. Further, the TCRAV repertoires among individuals were less variable compared to the TCRBV repertoires. Interestingly, considerable variations in the expression levels of BV3S1, BV4S1, and BV17S1 were observed among individuals. One polymorphic site was found at the coding region of BV4S1, and there were two alleles. These results suggest that variable expression among individuals may be associated with unknown allelic polymorphism in coding and/or regulatory regions of these TCRBV segments, or with disparity in HLA genes.

摘要

我们开发了一种基于衔接子连接PCR的微孔板杂交分析方法(MHA),用于分析T细胞受体α链可变区(TCRAV)和T细胞受体β链可变区(TCRBV)库。43个TCRAV特异性探针和38个TCRBV特异性探针通过水溶性碳二亚胺固定在微孔板孔中。5'-生物素化的PCR产物杂交后,进行定量ELISA,然后自动比色读数。使用代表性的TCRBV特异性探针优化固定和杂交条件。MHA的灵敏度使我们能够检测低至40 pg的生物素化PCR产物。通过MHA获得的各个V区段的频率与通过流式细胞术分析和反向斑点杂交分析获得的频率一致。使用单个96孔板即可完成整个TCRAV和TCRBV库的分析,且在6小时内即可完成。该方法的简单性和可重复性使其适用于常规实验室使用。接下来,使用新开发的MHA方法研究了14名健康供体外周血单个核细胞(PBMC)中TCRAV和TCRBV区段的表达。TCRAV8S1、TCRAV23S1、TCRBV2S1、TCRBV3S1、TCRBV4S1和TCRBV6S5在PBMC中高表达。此外,与TCRBV库相比,个体间的TCRAV库变化较小。有趣的是,观察到个体间BV3S1、BV4S1和BV17S1的表达水平存在相当大的差异。在BV4S1的编码区发现了一个多态性位点,有两个等位基因。这些结果表明,个体间的可变表达可能与这些TCRBV区段编码和/或调控区中未知的等位基因多态性有关,或者与HLA基因的差异有关。

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