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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
B-cell clonality determination using an immunoglobulin kappa light chain polymerase chain reaction method
Reetesh K Pai1, Artemis E Chakerian, John M Binder
1Department of Pathology, University of New Mexico, Albuquerque 87131, USA.
Insights
This study introduces a new kappa light chain gene (Igkappa) polymerase chain reaction (PCR) assay to improve B-cell malignancy detection. Combining Igkappa with immunoglobulin heavy chain (IgH) PCR significantly enhances clonality detection sensitivity.
Area of Science:
- Molecular Biology
- Oncology
- Immunogenetics
Background:
- Clonality assessment is crucial for diagnosing B-cell malignancies.
- Existing methods, like immunoglobulin heavy chain (IgH) gene polymerase chain reaction (PCR), have limitations in sensitivity.
- Improved diagnostic tools are needed to accurately identify neoplastic B-cell populations.
Purpose of the Study:
- To develop and evaluate a consensus primer kappa light chain gene (Igkappa) PCR assay for augmenting B-cell malignancy detection.
- To assess the combined efficacy of Igkappa PCR and IgH PCR in identifying clonality.
- To introduce a novel chip-based capillary electrophoresis method for rapid analysis of PCR products.
Main Methods:
- Designed a consensus primer Igkappa PCR assay and combined it with a consensus primer IgH PCR assay.
- Evaluated the assays in 86 paraffin-embedded tissue samples of lymphoproliferations.
- Analyzed PCR products using native polyacrylamide gel electrophoresis and chip-based capillary electrophoresis.
Main Results:
- The Igkappa PCR assay detected clonality in 72% of mature B-cell neoplasms.
- Combined Igkappa/IgH PCR increased overall sensitivity from 81% to 90% compared to IgH PCR alone.
- Igkappa PCR was particularly effective in germinal center-related lymphomas.
- Sequencing revealed common Vkappa and Jkappa gene family involvement in rearrangements.
Conclusions:
- The Igkappa PCR assay effectively improves the detection rate of clonality in B-cell neoplasms.
- Combined Igkappa/IgH PCR offers enhanced sensitivity for diagnosing B-cell malignancies.
- Chip-based capillary electrophoresis provides a rapid method for PCR fragment size evaluation.
Abstract:
To augment the detection of clonality in B-cell malignancies, we designed a consensus primer kappa light chain gene (Igkappa) polymerase chain reaction (PCR) assay in combination with a consensus primer immunoglobulin heavy chain gene (IgH) PCR assay. Its efficacy was then evaluated in a series of 86 paraffin tissue samples comprising neoplastic and reactive lymphoproliferations. Analysis after PCR was accomplished by 10% native polyacrylamide gel electrophoresis after heteroduplex pretreatment of PCR products and by a post-PCR chip-based capillary electrophoresis analytic method. Overall, 49 of 68 (72%) of mature B-cell neoplasms yielded discrete Igkappa gel bands within the predicted size range with no clonotypic Igkappa products observed among reactive lymphoid or T-cell proliferations. The application of Igkappa PCR improved overall sensitivity from 81% with IgH PCR alone to 90% with combined Igkappa/IgH PCR, with this effect being most notable in germinal center-related lymphomas. Sequencing of positive Igkappa rearrangements revealed that most rearrangements involved members of the Vkappa1 (40%) and Vkappa2 (34%) gene families along with Jkappa1 (26%), Jkappa2 (23%), and Jkappa4 (51%) gene segments. Involvement of Vkappa pseudogenes was identified in 24% of cases with Vkappa-KDE rearrangements. Our results demonstrate the efficacy of Igkappa PCR in improving the detection rate of clonality in B-cell neoplasms and further introduce a novel post-PCR chip-based capillary electrophoresis analytic method for rapid PCR fragment size evaluation.
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