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12/23规则在体内V(D)J重组的切割步骤中起作用。

The 12/23 rule is enforced at the cleavage step of V(D)J recombination in vivo.

作者信息

Steen S B, Gomelsky L, Roth D B

机构信息

Cell and Molecular Biology Program, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Genes Cells. 1996 Jun;1(6):543-53. doi: 10.1046/j.1365-2443.1996.d01-259.x.

Abstract

BACKGROUND

V(D)J recombination is initiated by the introduction of double-stranded breaks (DSB) adjacent to recombination signal sequences (RSS). Each RSS contains a conserved heptamer and a conserved nonamer element separated by a 12 or 23 nucleotide spacer. In vivo, efficient recombination requires one RSS of each spacer length, although it has been unclear whether this '12/23 rule' regulates cleavage, joining, or both.

RESULTS

We describe a novel system that permits semiquantitative detection of DSB at RSS derived from V(D)J recombination substrates transfected into cultured cells. This approach provides a powerful new tool for analysis of the cleavage and joining steps of V(D)J recombination in vivo. In this study, substrates containing either a consensus 12/23 RSS pair or various deviations from the consensus were used to investigate the requirements for cleavage. The results show that both a 12-spacer and a 23-spacer RSS are required for efficient cleavage. Truncated RAG-1 and RAG-2 proteins, while capable of cleaving at isolated RSS in cell-free systems, also require a 12/23 RSS pair for efficient cleavage in vivo.

CONCLUSIONS

These results suggest that the 12/23 rule is enforced at or prior to cleavage and support a synapsis model for V(D)J recombination. Detection of rare cleavage events in substrates containing a single RSS or a pair of RSS with the same spacer length provide evidence for an inefficient, single RSS cleavage pathway that may contribute to aberrant V(D)J rearrangements in vivo.

摘要

背景

V(D)J重组由与重组信号序列(RSS)相邻的双链断裂(DSB)引发。每个RSS包含一个保守的七聚体和一个保守的九聚体元件,二者被12或23个核苷酸的间隔序列隔开。在体内,高效重组需要每种间隔长度的一个RSS,尽管尚不清楚这种“12/23规则”是调节切割、连接还是两者都调节。

结果

我们描述了一种新系统,该系统允许对转染到培养细胞中的V(D)J重组底物衍生的RSS处的DSB进行半定量检测。这种方法为体内分析V(D)J重组的切割和连接步骤提供了一个强大的新工具。在本研究中,使用含有一致的12/23 RSS对或与一致序列有各种偏差的底物来研究切割的要求。结果表明,高效切割需要12间隔序列和23间隔序列的RSS。截短的RAG-1和RAG-2蛋白虽然能够在无细胞系统中在分离的RSS处切割,但在体内也需要12/23 RSS对才能进行高效切割。

结论

这些结果表明,12/23规则在切割时或切割之前起作用,并支持V(D)J重组的联会模型。在含有单个RSS或一对具有相同间隔长度的RSS的底物中检测到罕见的切割事件,为一种低效的单RSS切割途径提供了证据,该途径可能导致体内异常的V(D)J重排。

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