Rellahan B L, Bluestone J A, Houlden B A, Cotterman M M, Matis L A
Division of Cytokine Biology, Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, Maryland 20892.
J Exp Med. 1991 Feb 1;173(2):503-6. doi: 10.1084/jem.173.2.503.
T lymphocytes bearing the gamma/delta T cell receptor (TCR-gamma/delta) express a limited number of germline variable gene segments, generating receptor sequence diversity primarily through junctional mechanisms. To examine the role of V(D)J junctional sequences in antigen recognition by TCR-gamma/delta, we derived an alloreactive murine TCR-gamma/delta+ T cell line, LKD1, specific for the I-Ad class II major histocompatibility complex (MHC) molecule, and compared its receptor with that expressed by a previously characterized class II MHC alloreactive T cell line, LBK5, specific for I-Ek,b,s Ia molecules. Both LKD1 and LBK5 express receptors encoded by rearranged V gamma 1.2J gamma 2 and V delta 5D delta 2J delta 1 gene elements, differing in sequence only in the V(D)J junctional regions of the gamma and delta genes. These results demonstrate that junctionally encoded sequences corresponding to the putative third complementarity determining region can influence the antigen specificity of TCR-gamma/delta.
携带γ/δ T细胞受体(TCR-γ/δ)的T淋巴细胞表达数量有限的种系可变基因片段,主要通过连接机制产生受体序列多样性。为了研究V(D)J连接序列在TCR-γ/δ抗原识别中的作用,我们获得了一株对I-Ad II类主要组织相容性复合体(MHC)分子具有特异性的同种异体反应性小鼠TCR-γ/δ+ T细胞系LKD1,并将其受体与先前鉴定的对I-Ek,b,s Ia分子具有特异性的II类MHC同种异体反应性T细胞系LBK5所表达的受体进行比较。LKD1和LBK5均表达由重排的Vγ1.2Jγ2和Vδ5Dδ2Jδ1基因元件编码的受体,仅在γ和δ基因的V(D)J连接区域的序列有所不同。这些结果表明,对应于假定的第三个互补决定区的连接编码序列可影响TCR-γ/δ的抗原特异性。