Purugganan M M, Shah S, Kearney J F, Roth D B
Department of Immunology, M929, Baylor College of Medicine, 1 Baylor Plaza, Houston, TX 77030, USA.
Nucleic Acids Res. 2001 Apr 1;29(7):1638-46. doi: 10.1093/nar/29.7.1638.
V(D)J recombination generates a remarkably diverse repertoire of antigen receptors through the rearrangement of germline DNA. Terminal deoxynucleotidyl transferase (TdT), a polymerase that adds random nucleotides (N regions) to recombination junctions, is a key enzyme contributing to this diversity. The current model is that TdT adds N regions during V(D)J recombination by random collision with the DNA ends, without a dependence on other cellular factors. We previously demonstrated, however, that V(D)J junctions from Ku80-deficient mice unexpectedly lack N regions, although the mechanism responsible for this effect remains undefined in the mouse system. One possibility is that junctions are formed in these mice during a stage in development when TdT is not expressed. Alternatively, Ku80 may be required for the expression, nuclear localization or enzymatic activity of TdT. Here we show that V(D)J junctions isolated from Ku80-deficient fibroblasts are devoid of N regions, as were junctions in Ku80-deficient mice. In these cells TdT protein is abundant at the time of recombination, localizes properly to the nucleus and is enzymatically active. Based on these data, we propose that TdT does not add to recombination junctions through random collision but is actively recruited to the V(D)J recombinase complex by Ku80.
V(D)J重排通过种系DNA的重排产生了极为多样的抗原受体库。末端脱氧核苷酸转移酶(TdT)是一种向重排连接点添加随机核苷酸(N区)的聚合酶,是促成这种多样性的关键酶。目前的模型认为TdT在V(D)J重排过程中通过与DNA末端随机碰撞添加N区,不依赖其他细胞因子。然而,我们之前证明,来自Ku80缺陷小鼠的V(D)J连接点意外地缺乏N区,尽管在小鼠系统中导致这种效应的机制仍不清楚。一种可能性是这些小鼠的连接点在TdT不表达的发育阶段形成。或者,Ku80可能是TdT表达、核定位或酶活性所必需的。在这里我们表明,从Ku80缺陷成纤维细胞中分离的V(D)J连接点缺乏N区,Ku80缺陷小鼠中的连接点也是如此。在这些细胞中,TdT蛋白在重排时丰富,正确定位于细胞核且具有酶活性。基于这些数据,我们提出TdT不是通过随机碰撞添加到重排连接点,而是由Ku80主动招募到V(D)J重组酶复合物中。