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Updated: Mar 21, 2026

Immunoglobulin Gene Sequence Analysis In Chronic Lymphocytic Leukemia: From Patient Material To Sequence Interpretation
Published on: November 26, 2018
Illegitimate RAG-mediated recombination events are involved in IKZF1 Δ3-6 deletion in BCR-ABL1 lymphoblastic
1Department of Pathogenic Biology and Immunology, School of Basic Medical Sciences, Xi'an Jiaotong University Health Science Center.
Insights
Recombination activating gene (RAG) protein mediates the IKZF1 Δ3-6 deletion in BCR-ABL1(+) B acute lymphoblastic leukemia and lymphoid blast crisis chronic myeloid leukemia. This finding highlights RAG as a potential biomarker for disease surveillance and new therapeutic strategies.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- Breakpoint cluster region-Abelson murine leukaemia viral oncogene homologue 1 (BCR-ABL1) is a hallmark of chronic myeloid leukaemia (CML) and a subset of acute lymphoblastic leukaemia (ALL).
- The Ik6 transcript, lacking exons 3-6, is exclusively found in BCR-ABL1(+) B ALL and lymphoid blast crisis CML (BC-CML) patients with the IKZF1 Δ3-6 deletion.
Purpose of the Study:
- To investigate the hypothesis that illegitimate recombination activating gene (RAG)-mediated recombination events are involved in IKZF1 Δ3-6 deletion in BCR-ABL1 lymphoblastic leukaemia.
- To explore the role of RAG, BCR-ABL1, and Ikaros 6 (Ik6) in leukaemogenesis.
Main Methods:
- Quantification of RAG1 and RAG2 expression in ALL and BC-CML samples.
- Analysis of the relationship between RAG, BCR-ABL1, and Ik6 expression.
- DNA sequencing to identify recombination signal sequences (cRSSs) at deletion breakpoints.
- Chromatin immunoprecipitation (ChIP) to assess histone H3 lysine 4 trimethylation (H3K4me3) modifications at deletion sites.
Main Results:
- RAG expression levels were significantly higher in ALL and BC-CML (lymphoid) patients.
- Ik6 transcript generation was dependent on the co-existence of RAG and BCR-ABL1.
- Sequencing revealed cryptic recombination signal sequences (cRSSs) and inserted nucleotides at deletion breakpoints.
- ChIP analysis demonstrated increased H3K4me3 modifications flanking the IKZF1 Δ3-6 deletion breakpoints.
Conclusions:
- RAG-mediated recombination is responsible for the IKZF1 Δ3-6 deletion in BCR-ABL1(+) leukaemias.
- The combination of RAG expression, cRSSs, and H3K4me3 modifications creates conditions for RAG's off-target effects on IKZF1.
- RAG serves as a potential biomarker for disease surveillance and may offer new therapeutic avenues.
Abstract:
Breakpoint cluster region-Abelson murine leukaemia viral oncogene homologue 1 (BCR-ABL1), encoded by the Philadelphia (Ph) chromosome, is the characteristic of chronic myeloid leukaemia (CML) and a subset of acute lymphoblastic leukaemia (ALL). We demonstrated that expression of the Ik6 transcript, which lacked exons 3-6, was observed exclusively in BCR-ABL1(+) B ALL and lymphoid blast crisis CML (BC-CML) patients harbouring the IKZF1 Δ3-6 deletion. To confirm the hypothesis that illegitimate recombination activating gene protein (RAG)-mediated recombination events are involved in IKZF1 Δ3-6 deletion in BCR-ABL1 lymphoblastic leukaemia, we first demonstrated that the expression rates of RAG1 and RAG2, collectively called RAG, were higher in ALL and BC-CML (lymphoid). Notably, analysis of relationships among RAG, BCR-ABL1 and Ikaros 6 (Ik6) showed that Ik6 can be generated only if RAG and BCR-ABL1 are co-existing. The sequencing data showed that the deleted segments of introns 2 and 6 contained cryptic recombination signal sequences (cRSSs) and frequently had non-template nucleotides inserted between breakpoints. Furthermore, we used chromatin immunoprecipitation (ChIP) technology and demonstrated that the sequences directly flanking IKZF1 Δ3-6 deletion breakpoints have significantly higher levels of histone H3 lysine 4 trimethylation (H3K4me3) modifications. Overall, RAG expression, good-quality cRSS and a specific chromatin modification, H3K4me3, satisfy the conditions of RAG's off-target effects on IKZF1. Our work provides evidence for RAG-mediated IKZF1 Δ3-6 deletion. Our results raise the prospect that RAG is a valuable biomarker in disease surveillance. Dissecting the contribution of RAG should not only provide valuable mechanistic insights, but will also lead to a new therapeutic direction.
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