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首页> 外文期刊>Molecular cell >A biochemically defined system for coding joint formation in V(D)J recombination.
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A biochemically defined system for coding joint formation in V(D)J recombination.

机译:一个生化定义的系统,用于编码V(D)J重组中的接头形成。

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摘要

V(D)J recombination is one of the most complex DNA transactions in biology. The RAG complex makes double-stranded breaks adjacent to signal sequences and creates hairpin coding ends. Here, we find that the kinase activity of the Artemis:DNA-PKcs complex can be activated by hairpin DNA ends in cis, thereby allowing the hairpins to be nicked and then to undergo processing and joining by nonhomologous DNA end joining. Based on these insights, we have reconstituted many aspects of the antigen receptor diversification of V(D)J recombination by using 13 highly purified polypeptides, thereby permitting variable domain exon assembly by using this fully defined system in accord with the 12/23 rule for this process. The features of the recombination sites created by this system include all of the features observed in vivo (nucleolytic resection, P nucleotides, and N nucleotide addition), indicating that most, if not all, of the end modification enzymes have been identified.
机译:V(D)J重组是生物学中最复杂的DNA交易之一。 RAG复合物在信号序列附近产生双链断裂,并产生发夹编码末端。在这里,我们发现Artemis:DNA-PKcs复合物的激酶活性可以被顺式的发夹DNA末端激活,从而使发夹被切开,然后通过非同源的DNA末端连接进行加工和连接。基于这些见解,我们通过使用13种高度纯化的多肽重建了V(D)J重组的抗原受体多样化的许多方面,从而允许使用符合12/23规则的完整定义的系统进行可变域外显子组装这个流程。通过该系统创建的重组位点的特征包括体内观察到的所有特征(核酸切除,P核苷酸和N核苷酸添加),这表明,即使不是全部,大多数末端修饰酶也已被鉴定。

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