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E-GEOD-69473 SRP058979, GSE69473 RNA-seq of coding RNA Mus musculus

RAG Represents a Widespread Threat to the Lymphocyte Genome - (RNA-seq)

·Released Aug. 6, 2015 ·Updated Aug. 20, 2015
12
Samples
12
Assays
Description

The RAG1 endonuclease, together with its cofactor RAG2, is essential for V(D)J recombination but is a potent threat to genome stability. The sources of RAG1 mistargeting and the mechanisms that have evolved to suppress it are poorly understood. Here, we report the surprising finding that RAG1 binds to thousands of sites in the genome of developing lymphocytes, primarily at active promoters and enhancers. The genome has responded by reducing the abundance of "cryptic" recombination signals near sites of RAG1 binding. This depletion operates specifically on the RSS heptamer, with nonamers enriched at RAG1 binding sites. Reversing this RAG-driven depletion of cleavage sites by insertion of strong recombination signals creates an ectopic hub of RAG-mediated V(D)J recombination and chromosomal translocations. Our findings delineate rules governing RAG binding in the genome, identify areas at risk of RAG-mediated damage, and highlight the evolutionary struggle to accommodate programmed DNA damage in developing lymphocytes. RNA-seq profiles of mouse thymocytes

Sample Attributes
age
4 weeks, 5 weeks
cell type
thymocytes
genotype
Rag1: -/-, Rag1: -/-/tg[D708A]; TCRbeta: +/+/tg, Rag1: -/-; TCRbeta: +/+/tg, Rag2: -/-
organism
Mus musculus
Sex
female, male
strain
C57BL/6
Experiment Info
Accession
E-GEOD-69473
GEO ID
SRP058979, GSE69473
Type
RNA-seq of coding RNA
Organism
Mus musculus
Released
Aug. 6, 2015
Updated
Aug. 20, 2015
Submitter
Jason Qian、 Grace Teng、 Yaakov Maman、 David G Schatz、 Eric Meffre、 Marcus R Clark、 Lindsay G Cowell、 Yaakov Maman、 Min Kim、 Rafael Casellas、 Yanhong Ji、 Wolfgang Resch、 Arito Yamane、 Kyong-Rim Kieffer-Kwon、 Malay Mandal
Analysis Services
Analysis Services

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