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首页> 外文期刊>BMC Molecular Biology >HMG-box domain stimulation of RAG1/2 cleavage activity is metal ion dependent
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HMG-box domain stimulation of RAG1/2 cleavage activity is metal ion dependent

机译:HMG框域的RAG1 / 2切割活性的刺激是金属离子依赖。

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Background:RAG1 and RAG2 initiate V(D)J recombination by assembling a synaptic complex with a pair of antigen receptor gene segments through interactions with their flanking recombination signal sequence(RSS),and then introducing a DNA double-strand break at each RSS,separating it from the adjacent coding segment.While the RAG proteins are sufficient to mediate RSS binding and cleavage in vitro,these activities are stimulated by the architectural DNA binding and bending factors HMGB1 and HMGB2.Two previous studies(Bergeron et al.,2005,and Dai et al.,2005)came to different conclusions regarding whether only one of the two DNA binding domains of HMGB1 is sufficient to stimulate RAG-mediated binding and cleavage of naked DNA in vitro.Here we test whether this apparent discrepancy is attributed to the choice of divalent metal ion and the concentration of HMGB1 used in the cleavage reaction. Results:We show here that single HMG-box domains of HMGB1 stimulate RAG-mediated RSS cleavage in a concentration-dependent manner in the presence of Mn~(2+),but not Mg~(2+).Interestingly, the inability of a single HMG-box domain to stimulate RAG-mediated RSS cleavage in Mg~(2+)is overcome by the addition of partner RSS to promote synapsis.Furthermore,we show that mutant forms of HMGB1 which otherwise fail to stimulate RAG-mediated RSS cleavage in Mg~(2+) can be substantially rescued when Mg~(2+)is replaced with Mn~(2+). Conclusion:The conflicting data published previously in two different laboratories can be substantially explained by the choice of divalent metal ion and abundance of HMGB1 in the cleavage reaction.The observation that single HMG-box domains can promote RAG-mediated 23-RSS cleavage in Mg~(2+)in the presence,but not absence,of partner RSS suggests that synaptic complex assembly in vitro is associated with conformational changes that alter how the RAG and/or HMGB1 proteins bind and bend DNA in a manner that functionally replaces the role of one of the HMG- box domains in RAG-HMGB1 complexes assembled on a single RSS.
机译:背景:RAG1和RAG2通过与突触复合体通过其侧翼重组信号序列(RSS)相互作用组装突触复合体和一对抗原受体基因片段来启动V(D)J重组,然后在每个RSS处引入DNA双链断裂,尽管RAG蛋白足以在体外介导RSS结合和裂解,但这些活性却受到建筑DNA结合和弯曲因子HMGB1和HMGB2的刺激。先前的两项研究(Bergeron等,2005, (Dai等,2005)。关于HMGB1的两个DNA结合域中是否只有一个足以刺激RAG介导的裸DNA的结合和裂解,得出了不同的结论。在这里我们测试这种明显的差异是否归因于裂解反应中二价金属离子的选择和HMGB1的浓度。结果:我们在这里显示,HMGB1的单个HMG框结构域在Mn〜(2+)而不是Mg〜(2+)的存在下以浓度依赖的方式刺激RAG介导的RSS裂解。通过添加伴侣RSS来促进突触,克服了单个HMG-box域刺激Mg〜(2+)中RAG介导的RSS裂解。此外,我们显示了HMGB1的突变体形式,否则无法刺激RAG介导的RSS。当用Mg〜(2+)代替Mg〜(2+)时,Mg〜(2+)中的裂解基本可以挽救。结论:先前在两个不同实验室发表的矛盾数据可以通过裂解反应中二价金属离子的选择和HMGB1的丰度得到充分解释。单个HMG-box域可以促进RAG介导的23-RSS在Mg中的裂解。在存在但不存在伙伴RSS的〜(2+)情况下,体外突触复合体组装与构象变化有关,这些构象变化以功能上替代角色的方式改变了RAG和/或HMGB1蛋白结合和弯曲DNA的方式在单个RSS上组装的RAG-HMGB1复合物中的HMG-box域之一。

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