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体内单链重组信号序列切口:联会捕获模型的证据。

Single-strand recombination signal sequence nicks in vivo: evidence for a capture model of synapsis.

作者信息

Curry John D, Geier Jamie K, Schlissel Mark S

机构信息

Department of Molecular and Cell Biology, Division of Immunology, University of California, Berkeley, California 94720-3200, USA.

出版信息

Nat Immunol. 2005 Dec;6(12):1272-9. doi: 10.1038/ni1270. Epub 2005 Nov 13.

Abstract

Variable (diversity) joining (V(D)J) recombination is initiated by the introduction of single-strand DNA breaks (nicks) at recombination signal sequences (RSSs). The importance and fate of these RSS nicks for the regulation of the V(D)J rearrangement and their potential contribution to genomic instability are poorly understood. Using two new methodologies, we were able to detect and quantify specific RSS nicks introduced into genomic DNA by incubation with recombination-activating gene proteins in vitro. In vivo, however, we found that nicks mediated by recombination-activating gene (RAG) proteins were detectable only in gene segments associated with RSSs containing 12-base pair spacers but not in those containing 23-base pair spacers. These data support a model of capture rather than synapsis for pairwise RSS cleavage during V(D)J recombination.

摘要

可变(多样性)连接(V(D)J)重组由重组信号序列(RSSs)处的单链DNA断裂(切口)引发。这些RSS切口在V(D)J重排调控中的重要性和命运,以及它们对基因组不稳定性的潜在影响,目前了解甚少。使用两种新方法,我们能够通过体外与重组激活基因蛋白孵育来检测和定量引入基因组DNA中的特定RSS切口。然而,在体内,我们发现重组激活基因(RAG)蛋白介导的切口仅在与含12碱基对间隔序列的RSS相关的基因片段中可检测到,而在含23碱基对间隔序列的基因片段中则检测不到。这些数据支持了V(D)J重组过程中成对RSS切割的捕获而非联会模型。

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