Davodeau F, Peyrat M A, Hallet M M, Houde I, Vie H, Bonneville M
INSERM U211, Institut de Biologie, Nantes, France.
Eur J Immunol. 1993 Apr;23(4):804-8. doi: 10.1002/eji.1830230405.
Recent studies demonstrating the existence of murine gamma delta T cell subsets with structurally identical T cell receptors (TcR) suggest that unlike alpha beta T cells, some gamma delta T cells are specialized in the recognition of a limited number of monomorphic antigens. However, this question still remains open in humans, since the TcR structural diversity of their peripheral gamma delta T cells was shown to be extensive. Here we have analyzed in detail the TcR chain genes expressed by human V gamma 9+V delta 2+ peripheral blood lymphocytes (PBL), a major peripheral gamma delta T cell subset in adults and present evidence for an antigen-driven peripheral selection of both TcR gamma and delta junctional motifs among these cells. First, it is shown that the proportion of V gamma 9+V delta 2+ cells expressing the V9JPC1 gamma chain is much higher among PBL than among thymus-derived clones, indicating that preferential use of this J gamma segment is not due to pairing or combinatorial constraints. Second, analysis of V9JPC1 gamma transcripts derived from V gamma 9+V delta 2+ PBL clones revealed a high prevalence of a unique V9JP gamma sequence with limited "N" nucleotide additions and VJ trimming, which could not be accounted for by enzymatic or antigen-independent structural limitations. Third, the TcR delta chain expressed by most V gamma 9+V delta 2+ PBL clones, though diverse in amino acid composition and length, carried a highly distinctive junctional motif, found at a much lower frequency among V2DJ delta sequences derived from V gamma 9-V delta 2+ PBL or V gamma 9+V delta 2+ thymocytes. Together, these results which demonstrate shared gamma and delta junctional features by cells using unique V gamma and V delta genes, suggest that in vivo selection of V gamma 9+V delta 2+ lymphocytes is mediated by a highly restricted number of nominal ligands.
近期研究表明,存在具有结构相同的T细胞受体(TcR)的小鼠γδT细胞亚群,这表明与αβT细胞不同,一些γδT细胞专门识别有限数量的单态抗原。然而,在人类中这个问题仍然悬而未决,因为已显示其外周γδT细胞的TcR结构多样性很广泛。在这里,我们详细分析了人类Vγ9 + Vδ2 +外周血淋巴细胞(PBL)表达的TcR链基因,PBL是成人主要的外周γδT细胞亚群,并提供了这些细胞中TcRγ和δ连接基序的抗原驱动外周选择的证据。首先,研究表明,表达V9JPC1γ链的Vγ9 + Vδ2 +细胞在PBL中的比例远高于胸腺来源的克隆,这表明优先使用该Jγ片段并非由于配对或组合限制。其次,对来自Vγ9 + Vδ2 + PBL克隆的V9JPC1γ转录本的分析显示,一种独特的V9JPγ序列高度普遍,其“N”核苷酸添加和VJ修剪有限,这不能用酶促或抗原非依赖性结构限制来解释。第三,大多数Vγ9 + Vδ2 + PBL克隆表达的TcRδ链,尽管氨基酸组成和长度不同,但带有高度独特的连接基序,在来自Vγ9 - Vδ2 + PBL或Vγ9 + Vδ2 +胸腺细胞的V2DJδ序列中出现频率要低得多。总之,这些结果表明使用独特Vγ和Vδ基因的细胞具有共享的γ和δ连接特征,这表明Vγ9 + Vδ2 +淋巴细胞的体内选择是由数量非常有限的名义配体介导的。