Talukder Sadiqur R, Dudley Darryll D, Alt Frederick W, Takahama Yousuke, Akamatsu Yoshiko
Institute for Genome Research, University of Tokushima, Tokushima 770-8503, Japan and Howard Hughes Medical Institute, Children's Hospital, Harvard Medical School, CBR Institute for Biomedical Research, Boston, MA 02115, USA.
Nucleic Acids Res. 2004 Aug 24;32(15):4539-49. doi: 10.1093/nar/gkh778. Print 2004.
RAG1 and RAG2 play a central role in V(D)J recombination, a process for antigen receptor gene assembly. The truncated 'core' regions of RAGs are sufficient to catalyze the recombination reaction, although with lower joining efficiency than full-length proteins. To investigate the role of the non-core regions of RAGs in the end-joining phase of antigen receptor rearrangement, we analyzed recombination products isolated from core RAG1 and core RAG2 knock-in mice. Here, we report that the truncation of RAGs increases the frequency of aberrant recombination in vivo. Signal joints (SJs) associated with V-to-D recombination of core RAG1 knock-in mice were normal, whereas those of core RAG2 knock-in mice were highly imprecise, containing large deletions and additions, and in some cases coding sequences. In contrast, we found an elevated level of imprecise D-to-J associated SJs for both core RAG1- and RAG2-expressing mice. Likewise, sequences of coding joints (CJs) were also affected by the expression of core RAGs. Finally, sequences found at the junctions of rearranged T-cell receptor loci were highly influenced by differences in rearranging recombination signal sequence pairs. We provide the first evidence that the non-core regions of RAGs have critical functions in the proper assembly and resolution of recombination intermediates in endogenous antigen receptor loci.
RAG1和RAG2在V(D)J重组中发挥核心作用,V(D)J重组是一种抗原受体基因组装过程。RAGs的截短“核心”区域足以催化重组反应,尽管其连接效率低于全长蛋白。为了研究RAGs的非核心区域在抗原受体重排的末端连接阶段的作用,我们分析了从核心RAG1和核心RAG2基因敲入小鼠中分离出的重组产物。在此,我们报告RAGs的截短增加了体内异常重组的频率。与核心RAG1基因敲入小鼠的V-to-D重组相关的信号接头(SJ)是正常的,而核心RAG2基因敲入小鼠的SJ则高度不准确,包含大的缺失和插入,在某些情况下还包含编码序列。相比之下,我们发现表达核心RAG1和RAG2的小鼠中,与D-to-J相关的SJ不准确水平均有所升高。同样,编码接头(CJ)的序列也受到核心RAGs表达的影响。最后,重排的T细胞受体基因座连接处发现的序列受到重排重组信号序列对差异的高度影响。我们提供了首个证据,证明RAGs的非核心区域在内源抗原受体基因座重组中间体的正确组装和解析中具有关键功能。