RAG Transposase Can Capture and Commit to Target DNA before or after Donor Cleavage
Open Access
- 1 July 2001
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 21 (13) , 4302-4310
- https://doi.org/10.1128/mcb.21.13.4302-4310.2001
Abstract
The discovery that the V(D)J recombinase functions as a transposase in vitro suggests that transposition by this system might be a potent source of genomic instability. To gain insight into the mechanisms that regulate transposition, we investigated a phenomenon termed target commitment that reflects a functional association between the RAG transposase and the target DNA. We found that the V(D)J recombinase is quite promiscuous, forming productive complexes with target DNA both before and after donor cleavage, and our data indicate that the rate-limiting step for transposition occurs after target capture. Formation of stable target capture complexes depends upon the presence of active-site metal binding residues (the DDE motif), suggesting that active-site amino acids in RAG-1 are critical for target capture. The ability of the RAG transposase to commit to target prior to cleavage may result in a preference for transposition into nearby targets, such as immunoglobulin and T-cell receptor loci. This could bias transposition toward relatively “safe” regions of the genome. A preference for localized transposition may also have influenced the evolution of the antigen receptor loci.Keywords
This publication has 39 references indexed in Scilit:
- Joining-Deficient RAG1 Mutants Block V(D)J Recombination In Vivo and Hairpin Opening In VitroMolecular Cell, 2001
- Proximity of Chromosomal Loci That Participate in Radiation-Induced Rearrangements in Human CellsScience, 2000
- RAG1/2-Mediated Resolution of Transposition IntermediatesCell, 2000
- The Old and the RestlessThe Journal of Experimental Medicine, 2000
- VDJ Recombination: A Transposase Goes to WorkCell, 1998
- New insights into V(D)J recombination and its role in the evolution of the immune systemImmunity, 1995
- Tn7 transposition: Target DNA recognition is mediated by multiple Tn7-encoded proteins in a purified in vitro systemPublished by Elsevier ,1993
- MuB protein allosterically activates strand transfer by the transposase of phage MuCell, 1991
- Tn7 transposition in vitro proceeds through an excised transposon intermediate generated by staggered breaks in DNACell, 1991
- RAG-1 and RAG-2, Adjacent Genes That Synergistically Activate V(D)J RecombinationScience, 1990