Arbuckle J L, Fauss L A, Simpson R, Ptaszek L M, Rodgers K K
Department of Biochemistry and Molecular Biology, The University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73190, USA.
J Biol Chem. 2001 Oct 5;276(40):37093-101. doi: 10.1074/jbc.M105988200. Epub 2001 Jul 30.
V(D)J recombination is instigated by the recombination-activating proteins RAG1 and RAG2, which catalyze site-specific DNA cleavage at the border of the recombination signal sequence (RSS). Although both proteins are required for activity, core RAG1 (the catalytically active region containing residues 384-1008 of 1040) alone displays binding specificity for the conserved heptamer and nonamer sequences of the RSS. The nonamer-binding region lies near the N terminus of core RAG1, whereas the heptamer-binding region has not been identified. Here, potential domains within core RAG1 were identified using limited proteolysis studies. An iterative procedure of DNA cloning, protein expression, and characterization revealed the presence of two topologically independent domains within core RAG1, referred to as the central domain (residues 528-760) and the C-terminal domain (residues 761-980). The domains do not include the nonamer-binding region but rather largely span the remaining relatively uncharacterized region of core RAG1. Characterization of macromolecular interactions revealed that the central domain bound to the RSS with specificity for the heptamer and contained the predominant binding site for RAG2. The C-terminal domain bound DNA cooperatively but did not show specificity for either conserved RSS element. This domain was also found to self-associate, implicating it as a dimerization domain within RAG1.
V(D)J重排由重组激活蛋白RAG1和RAG2启动,它们催化重组信号序列(RSS)边界处的位点特异性DNA切割。尽管两种蛋白对于活性都是必需的,但单独的核心RAG1(包含1040个氨基酸中384 - 1008位氨基酸的催化活性区域)对RSS的保守七聚体和九聚体序列表现出结合特异性。九聚体结合区域位于核心RAG1的N端附近,而七聚体结合区域尚未确定。在此,通过有限蛋白酶解研究确定了核心RAG1内的潜在结构域。DNA克隆、蛋白质表达和表征的迭代过程揭示了核心RAG1内存在两个拓扑独立的结构域,称为中央结构域(528 - 760位氨基酸)和C端结构域(761 - 980位氨基酸)。这些结构域不包括九聚体结合区域,而是在很大程度上跨越了核心RAG1其余相对未被表征的区域。大分子相互作用的表征表明,中央结构域以对七聚体的特异性结合到RSS,并包含RAG2的主要结合位点。C端结构域协同结合DNA,但对任何一个保守的RSS元件都没有显示出特异性。还发现该结构域能自我缔合,表明它是RAG1内的二聚化结构域。