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首页> 外文期刊>Molecular and Cellular Biology >A RAG-1/RAG-2 Tetramer Supports 12/23-Regulated Synapsis, Cleavage, and Transposition of V(D)J Recombination Signals
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A RAG-1/RAG-2 Tetramer Supports 12/23-Regulated Synapsis, Cleavage, and Transposition of V(D)J Recombination Signals

机译:RAG-1 / RAG-2四聚体支持12(23)调节的突触,裂解和V(D)J重组信号的转位

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Initiation of V(D)J recombination involves the synapsis and cleavage of a 12/23 pair of recombination signal sequences by RAG-1 and RAG-2. Ubiquitous nonspecific DNA-bending factors of the HMG box family, such as HMG-1, are known to assist in these processes. After cleavage, the RAG proteins remain bound to the cut signal ends and, at least in vitro, support the integration of these ends into unrelated target DNA via a transposition-like mechanism. To investigate whether the protein complex supporting synapsis, cleavage, and transposition of V(D)J recombination signals utilized the same complement of RAG and HMG proteins, I compared the RAG protein stoichiometries and activities of discrete protein-DNA complexes assembled on intact, prenicked, or precleaved recombination signal sequence (RSS) substrates in the absence and presence of HMG-1. In the absence of HMG-1, I found that two discrete RAG-1/RAG-2 complexes are detected by mobility shift assay on all RSS substrates tested. Both contain dimeric RAG-1 and either one or two RAG-2 subunits. The addition of HMG-1 supershifts both complexes without altering the RAG protein stoichiometry. I find that 12/23-regulated recombination signal synapsis and cleavage are only supported in a protein-DNA complex containing HMG-1 and a RAG-1/RAG-2 tetramer. Interestingly, the RAG-1/RAG-2 tetramer also supports transposition, but HMG-1 is dispensable for its activity.
机译:V(D)J重组的启动涉及RAG-1和RAG-2对12/23对重组信号序列的突触和切割。 HMG盒家族的普遍存在的非特异性DNA弯曲因子,例如HMG-1,在这些过程中起着辅助作用。切割后,RAG蛋白保持与切割信号末端的结合,并且至少在体外,通过转座样机制支持这些末端整合到无关的靶DNA中。为了研究支持V(D)J重组信号突触,切割和转座的蛋白质复合物是否利用了RAG和HMG蛋白质的相同补体,我比较了RAG蛋白质的化学计量比和组装完整,预先标记的离散蛋白质-DNA复合物的活性,或在没有HMG-1的情况下预先切割的重组信号序列(RSS)底物。在没有HMG-1的情况下,我发现在所有测试的RSS底物上通过迁移率漂移分析检测到两个离散的RAG-1 / RAG-2复合物。两者均包含二聚体RAG-1和一个或两个RAG-2亚基。 HMG-1的添加使两种复合物都发生了超位移,而没有改变RAG蛋白的化学计量。我发现仅在包含HMG-1和RAG-1 / RAG-2四聚体的蛋白质-DNA复合物中支持12/23调控的重组信号突触和切割。有趣的是,RAG-1 / RAG-2四聚体也支持转座,但是HMG-1对于其活性是必不可少的。

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