4.7 Article

Progressive immunoglobulin gene mutations in chronic lymphocytic leukemia: evidence for antigen-driven intraclonal diversification

Journal

BLOOD
Volume 109, Issue 4, Pages 1559-1567

Publisher

AMER SOC HEMATOLOGY
DOI: 10.1182/blood-2006-05-020644

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Funding

  1. NIAID NIH HHS [AI-051445, P30 AI051445] Funding Source: Medline

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Somatic mutations of immunoglobulin genes characterize mature memory B cells, and intraclonal B-cell diversification is typically associated with expansion of B-cell clones with greater affinity for antigen (antigen drive). Evidence for a role of antigen in progression of intraclonal chronic lymphocytic leukemia (CILL) cell diversification in patients with mutated immunoglobulin genes has not been previously presented. We performed a single-cell analysis of immunoglobulin heavy and light chains in 6 patients with somatically mutated CLIL-cell immunoglobulin genes and identified 2 patients with multiple related (oligoclonal) subgroups of CILL cells. We constructed genealogic trees of these oligocional CILL-cell subgroups and assessed the effects of immunoglobulin somatic mutations on the ratios of replacement and silent amino acid changes in the framework and antigen-binding regions (CDRs) of the immunoglobulin heavy and light chains from each oligoclonal CILL-cell population. In one subject, the amino acid changes were consistent with an antigen-driven progression of clonally related CILL-cell populations. In the other subject, intraclonal diversification was associated with immunoglobulin amino acid changes that would have likely lessened antigen affinity. Taken together, these studies support the hypothesis that in some CLL cases intraclonal diversification is dependent on antigen interactions with immunoglobulin receptors.

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