首页> 美国卫生研究院文献>other >Both High Mobility Group (HMG)-boxes and the Acidic Tail of HMGB1 Regulate Recombination-activating Gene (RAG)-mediated Recombination Signal Synapsis and Cleavage in Vitro
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Both High Mobility Group (HMG)-boxes and the Acidic Tail of HMGB1 Regulate Recombination-activating Gene (RAG)-mediated Recombination Signal Synapsis and Cleavage in Vitro

机译:高迁移率族(HMG)框和HMGB1的酸性尾部均调节重组激活基因(RAG)介导的重组信号突触和体外切割。

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摘要

RAG-1 and RAG-2 initiate V(D)J recombination through synapsis and cleavage of a 12/23 pair of V(D)J recombination signal sequences (RSS). RAG-RSS complex assembly and activity in vitro is promoted by high mobility group proteins of the “HMG-box” family, exemplified by HMGB1. How HMGB1 stimulates the DNA binding and cleavage activity of the RAG complex remains unclear. HMGB1 contains two homologous HMG-box DNA binding domains, termed A and B, linked by a stretch of basic residues to a highly acidic C-terminal tail. To identify determinants of HMGB1 required for stimulation of RAG-mediated RSS binding and cleavage, we prepared an extensive panel of mutant HMGB1 proteins and tested their ability to augment RAG-mediated RSS binding and cleavage activity. Using a combination of mobility shift and in-gel cleavage assays, we find that HMGB1 promotes RAG-mediated cleavage largely through the activity of box B, but optimal stimulation requires a functional A box tethered in the correct orientation. Box A or B mutants fail to promote RAG synaptic complex formation, but this defect is alleviated when the acidic tail is removed from these mutants.
机译:RAG-1和RAG-2通过12/23对V(D)J重组信号序列(RSS)的突触和切割来启动V(D)J重组。 RAG-RSS复合物的体外组装和活性由“ HMG-box”家族的高迁移率基团蛋白促进,例如HMGB1。 HMGB1如何刺激RAG复合物的DNA结合和切割活性尚不清楚。 HMGB1包含两个同源的HMG-box DNA结合结构域,称为A和B,通过一连串的碱性残基连接到高度酸性的C末端尾部。为了确定刺激RAG介导的RSS结合和裂解所需的HMGB1的决定因素,我们准备了一系列突变HMGB1蛋白,并测试了它们增强RAG介导的RSS结合和裂解活性的能力。使用迁移率转移和凝胶内裂解试验的组合,我们发现HMGB1主要通过框B的活性促进RAG介导的裂解,但是最佳刺激需要以正确的方向拴系功能性A框。框A或B突变体不能促进RAG突触复合物的形成,但是当从这些突变体中除去酸性尾巴时,这种缺陷得到缓解。

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