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Publication : Evidence for a role of RUNX1 as recombinase cofactor for TCRβ rearrangements and pathological deletions in ETV6-RUNX1 ALL.

First Author  Seitz V Year  2020
Journal  Sci Rep Volume  10
Issue  1 Pages  10024
PubMed ID  32572036 Mgi Jnum  J:293768
Mgi Id  MGI:6451845 Doi  10.1038/s41598-020-65744-0
Citation  Seitz V, et al. (2020) Evidence for a role of RUNX1 as recombinase cofactor for TCRbeta rearrangements and pathological deletions in ETV6-RUNX1 ALL. Sci Rep 10(1):10024
abstractText  T-cell receptor gene beta (TCRbeta) gene rearrangement represents a complex, tightly regulated molecular mechanism involving excision, deletion and recombination of DNA during T-cell development. RUNX1, a well-known transcription factor for T-cell differentiation, has recently been described to act in addition as a recombinase cofactor for TCRdelta gene rearrangements. In this work we employed a RUNX1 knock-out mouse model and demonstrate by deep TCRbeta sequencing, immunostaining and chromatin immunoprecipitation that RUNX1 binds to the initiation site of TCRbeta rearrangement and its homozygous inactivation induces severe structural changes of the rearranged TCRbeta gene, whereas heterozygous inactivation has almost no impact. To compare the mouse model results to the situation in Acute Lymphoblastic Leukemia (ALL) we analyzed TCRbeta gene rearrangements in T-ALL samples harboring heterozygous Runx1 mutations. Comparable to the Runx1(+/-) mouse model, heterozygous Runx1 mutations in T-ALL patients displayed no detectable impact on TCRbeta rearrangements. Furthermore, we reanalyzed published sequence data from recurrent deletion borders of ALL patients carrying an ETV6-RUNX1 translocation. RUNX1 motifs were significantly overrepresented at the deletion ends arguing for a role of RUNX1 in the deletion mechanism. Collectively, our data imply a role of RUNX1 as recombinase cofactor for both physiological and aberrant deletions.
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