Landree M A, Wibbenmeyer J A, Roth D B
Program in Cell and Molecular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.
Genes Dev. 1999 Dec 1;13(23):3059-69. doi: 10.1101/gad.13.23.3059.
RAG1 and RAG2 initiate V(D)J recombination, the process of rearranging the antigen-binding domain of immunoglobulins and T-cell receptors, by introducing site-specific double-strand breaks (DSB) in chromosomal DNA during lymphocyte development. These breaks are generated in two steps, nicking of one strand (hydrolysis), followed by hairpin formation (transesterification). The nature and location of the RAG active site(s) have remained unknown. Because acidic amino acids have a critical role in catalyzing DNA cleavage by nucleases and recombinases that require divalent metal ions as cofactors, we hypothesized that acidic active site residues are likewise essential for RAG-mediated DNA cleavage. We altered each conserved acidic amino acid in RAG1 and RAG2 by site-directed mutagenesis, and examined >100 mutants using a combination of in vivo and in vitro analyses. No conserved acidic amino acids in RAG2 were critical for catalysis; three RAG1 mutants retained normal DNA binding, but were catalytically inactive for both nicking and hairpin formation. These data argue that one active site in RAG1 performs both steps of the cleavage reaction. Amino acid substitution experiments that changed the metal ion specificity suggest that at least one of these three residues contacts the metal ion(s) directly. These data suggest that RAG-mediated DNA cleavage involves coordination of divalent metal ion(s) by RAG1.
RAG1和RAG2通过在淋巴细胞发育过程中在染色体DNA中引入位点特异性双链断裂(DSB)来启动V(D)J重组,即重排免疫球蛋白和T细胞受体抗原结合域的过程。这些断裂分两步产生,一条链的切口(水解),随后是发夹形成(转酯反应)。RAG活性位点的性质和位置一直未知。由于酸性氨基酸在催化需要二价金属离子作为辅因子的核酸酶和重组酶切割DNA中起关键作用,我们推测酸性活性位点残基同样是RAG介导的DNA切割所必需的。我们通过定点诱变改变了RAG1和RAG2中每个保守的酸性氨基酸,并使用体内和体外分析相结合的方法检测了100多个突变体。RAG2中没有保守的酸性氨基酸对催化至关重要;三个RAG1突变体保留了正常的DNA结合能力,但在切口和发夹形成方面均无催化活性。这些数据表明,RAG1中的一个活性位点执行切割反应的两个步骤。改变金属离子特异性的氨基酸取代实验表明,这三个残基中至少有一个直接与金属离子接触。这些数据表明,RAG介导的DNA切割涉及RAG1对二价金属离子的配位。