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V(D)J重排在体外发生移动。

V(D)J recombination moves in vitro.

作者信息

Schatz D G

机构信息

Howard Hughes Medical Institute, Section of Immunobiology, Yale University School of Medicine, New Haven, CT 06520-8011, USA.

出版信息

Semin Immunol. 1997 Jun;9(3):149-59. doi: 10.1006/smim.1997.0068.

Abstract

Substantial progress has been made recently in the study of the mechanism of V(D)J recombination, prompted in large part by the development of an in-vitro system for performing the DNA cleavage portion of the reaction. It is now clear that the RAG1 and RAG2 proteins play a direct role in DNA recognition and cleavage and that both RAG proteins are required for the nicking and strand transfer steps of the cleavage reaction. The heptamer of the recombination signal is critical for precise and efficient targeting of cleavage. In contrast, the nonamer plays an important role in initial sequence specific DNA binding and is contacted directly by RAG1. In-vitro systems have been established that perform cleavage at endogenous antigen receptor loci in intact nuclei, or that perform the complete recombination reaction, suggesting that progress in the field will continue at its current rapid pace.

摘要

最近,V(D)J重组机制的研究取得了重大进展,这在很大程度上得益于用于进行该反应DNA切割部分的体外系统的发展。现在已经清楚,RAG1和RAG2蛋白在DNA识别和切割中起直接作用,并且切割反应的切口和链转移步骤都需要这两种RAG蛋白。重组信号的七聚体对于切割的精确和有效靶向至关重要。相比之下,九聚体在初始序列特异性DNA结合中起重要作用,并与RAG1直接接触。已经建立了在完整细胞核内源性抗原受体位点进行切割或进行完整重组反应的体外系统,这表明该领域的进展将以目前的快速步伐继续下去。

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