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Updated: May 31, 2026

VDJ-Seq: Deep Sequencing Analysis of Rearranged Immunoglobulin Heavy Chain Gene to Reveal Clonal Evolution Patterns of B Cell Lymphoma
Published on: December 28, 2015
Selection of individual VH genes occurs at the pro-B to pre-B cell transition
Wenzhao Meng1, Lenka Yunk, Li-San Wang
1Department of Pathology and Laboratory Medicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Insights
Individual antibody heavy chain genes (V(H)) show distinct in-frame rearrangement fractions, established during pre-B cell selection. This differential selection impacts the antibody repertoire, with variations observed between V(H) clans.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- B cell development involves multiple selection checkpoints.
- Studying antibody heavy chain (Ab H) selection is challenging due to CDR3 diversity.
Purpose of the Study:
- To investigate the selection of individual antibody heavy chain variable region genes (V(H)).
- To quantify and compare the in-frame rearrangement fractions (IF fractions) of different V(H) genes.
Main Methods:
- CDR3 spectratyping of approximately 75-300 rearrangements per V(H) in C57BL6/J mice.
- Measurement of the fraction of in-frame rearrangements in B cell DNA at various developmental stages.
Main Results:
- Individual V(H) genes exhibit reproducible, distinct IF fractions (10-90%).
- IF fractions shift from pro-B cells (~33%) to mature B cells during the cycling pre-B cell stage.
- High IF V(H) usage increases in cycling pre-B cells, unlike low IF V(H)s.
- Differential CDR2 sequence characteristics correlate with IF fractions in V(H) clans I, II, and III.
Conclusions:
- Individual V(H) genes undergo differential selection.
- Pre-B cell receptor-mediated selection primarily establishes V(H) IF fractions.
- Selection mechanisms may differ between V(H) clans.
- Established V(H) IF fractions exert a lasting influence on the antibody repertoire.
Abstract:
B cells are subjected to selection at multiple checkpoints during their development. The selection of Ab H chains is difficult to study because of the large diversity of the CDR3. To study the selection of individual Ab H chain V region genes (V(H)), we performed CDR3 spectratyping of ∼ 75-300 rearrangements per individual V(H) in C57BL6/J mice. We measured the fraction of rearrangements that were in-frame in B cell DNA. We demonstrate that individual V(H)s have different fractions of in-frame rearrangements (IF fractions) ranging from 10 to 90% and that these IF fractions are reproducible in different mice. For most V(H)s, the IF fraction in pro-B cells approximated 33% and then shifted to the nearly final (mature) B cell value by the cycling pre-B cell stage. The frequency of high in-frame (IF) V(H) usage increased in cycling pre-B cells compared with that in pro-B cells, whereas this did not occur for low IF V(H)s. The IF fraction did not shift as much in BCR-expressing B cells and was minimally affected by L chain usage for most V(H). High IF clan II/III V(H)s share more positively charged CDR2 sequences, whereas high IF clan I J558 CDR2 sequences are diverse. These data indicate that individual V(H)s are subjected to differential selection, that V(H) IF fraction is mainly established through pre-BCR-mediated selection, that it may operate differently in clan I versus II/III V(H)s, and that it has a lasting influence on the Ab repertoire.
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