Rodgers K K, Villey I J, Ptaszek L, Corbett E, Schatz D G, Coleman J E
Department of Molecular Biophysics and Biochemistry, Section of Immunobiology, Howard Huges Medical Institute, Yale University, New Haven, CT 06520-8114, USA.
Nucleic Acids Res. 1999 Jul 15;27(14):2938-46. doi: 10.1093/nar/27.14.2938.
RAG1 and RAG2 are the two lymphoid-specific proteins required for the cleavage of DNA sequences known as the recombination signal sequences (RSSs) flanking V, D or J regions of the antigen-binding genes. Previous studies have shown that RAG1 alone is capable of binding to the RSS, whereas RAG2 only binds as a RAG1/RAG2 complex. We have expressed recombinant core RAG1 (amino acids 384-1008) in Escherichia coli and demonstrated catalytic activity when combined with RAG2. This protein was then used to determine its oligomeric forms and the dissociation constant of binding to the RSS. Electrophoretic mobility shift assays show that up to three oligomeric complexes of core RAG1 form with a single RSS. Core RAG1 was found to exist as a dimer both when free in solution and as the minimal species bound to the RSS. Competition assays show that RAG1 recognizes both the conserved nonamer and heptamer sequences of the RSS. Zinc analysis shows the core to contain two zinc ions. The purified RAG1 protein overexpressed in E.coli exhibited the expected cleavage activity when combined with RAG2 purified from transfected 293T cells. The high mobility group protein HMG2 is stably incorporated into the recombinant RAG1/RSS complex and can increase the affinity of RAG1 for the RSS in the absence of RAG2.
重组激活基因1(RAG1)和重组激活基因2(RAG2)是两种淋巴细胞特异性蛋白,它们对于切割抗原结合基因V、D或J区域两侧被称为重组信号序列(RSS)的DNA序列是必需的。先前的研究表明,单独的RAG1能够与RSS结合,而RAG2仅作为RAG1/RAG2复合物结合。我们在大肠杆菌中表达了重组核心RAG1(氨基酸384 - 1008),并证明其与RAG2结合时具有催化活性。然后使用该蛋白来确定其寡聚形式以及与RSS结合的解离常数。电泳迁移率变动分析表明,单个RSS可形成多达三种核心RAG1的寡聚复合物。发现核心RAG1在溶液中游离时以及作为与RSS结合的最小物种时均以二聚体形式存在。竞争分析表明,RAG1识别RSS的保守九聚体和七聚体序列。锌分析表明核心含有两个锌离子。在大肠杆菌中过表达的纯化RAG1蛋白与从转染的293T细胞中纯化的RAG2结合时,表现出预期的切割活性。高迁移率族蛋白HMG2稳定地掺入重组RAG1/RSS复合物中,并且在没有RAG2的情况下可以增加RAG1对RSS的亲和力。