Touvrey Cédric, Borel Eve, Marche Patrice N, Jouvin-Marche Evelyne, Candéias Serge M
CEA, DSV, DRDC, Laboratoire d'Immunochimie, 17 rue des martyrs, Grenoble F-38054, France.
Immunobiology. 2006;211(9):741-51. doi: 10.1016/j.imbio.2006.04.001. Epub 2006 Jun 5.
V(D)J recombination assembles functional T-cell receptor (TCR) genes from V, D and J components in developing thymocytes. Extensive processing of V, D and J extremities before they are ligated creates a high degree of junctional diversity which results in the generation of a large repertoire of different TCR chains. In contrast, the extremities of the intervening DNA segment, which bear the recombination signal sequences, are generally held to be monomorphic, so that signal joints (SJs) consist of the perfect head-to-head juxtaposition of recombination signal extremities. We analyzed the structure of SJs generated during the recombination of TCRAD locus genes in murine and human thymocytes. Junctional diversity resulting from N nucleotide additions or from N nucleotide additions and base loss was found for each type of SJ examined. Different patterns of processing/modification were found, suggesting that different enzymatic activities operate during recombination of TCRA and TCRD genes, although they are located within the same genetic locus. Recombination of the deltaRec-1 element generates a diverse repertoire of SJs exhibiting both combinatorial and junctional diversity in murine and human thymocytes. Therefore, SJ diversity appears to be an intrinsic feature of V(D)J recombination in unmanipulated thymocytes.
V(D)J重组从发育中的胸腺细胞中的V、D和J基因片段组装功能性T细胞受体(TCR)基因。V、D和J末端在连接之前的广泛加工产生了高度的连接多样性,这导致了大量不同TCR链的产生。相比之下,携带重组信号序列的中间DNA片段的末端通常被认为是单态的,因此信号接头(SJ)由重组信号末端的完美头对头并列组成。我们分析了小鼠和人类胸腺细胞中TCRAD基因座基因重组过程中产生的SJ的结构。在所检测的每种SJ类型中都发现了由N核苷酸添加或N核苷酸添加和碱基缺失导致的连接多样性。发现了不同的加工/修饰模式,这表明在TCRA和TCRD基因重组过程中有不同的酶活性起作用,尽管它们位于同一基因座内。deltaRec-1元件的重组在小鼠和人类胸腺细胞中产生了具有组合多样性和连接多样性的多种SJ。因此,SJ多样性似乎是未受操纵的胸腺细胞中V(D)J重组的一个固有特征。