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Citations to this article

Examples of in vivo isotype class switching in IgM+ chronic lymphocytic leukemia B cells.
F Fais, … , M Ferrarini, N Chiorazzi
F Fais, … , M Ferrarini, N Chiorazzi
Published October 1, 1996
Citation Information: J Clin Invest. 1996;98(7):1659-1666. https://doi.org/10.1172/JCI118961.
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Examples of in vivo isotype class switching in IgM+ chronic lymphocytic leukemia B cells.

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Abstract

Chronic lymphocytic leukemia (CLL) usually involves the expansion of a clone of CD5+ B cells synthesizing IgM antibodies. These B cells appear to be blocked at the antigen receptor-expressing stage of B cell differentiation and are thought not to undergo an isotype class switch to IgG or IgA production. In vivo and in vitro studies suggest, however, that in some instances terminal differentiation and isotype switching can occur. To test the hypothesis that in vivo isotype class switching occurs in IgM+ B-type CLL cells, we analyzed the PBMC of 19 CLL patients for the presence of transcripts encoding the rearranged CLL V(H)DJ(H) associated with either gamma or alpha H chains. The molecular data indicate that approximately 50% of B-CLL patients have amplifications of IgM+ B cells that undergo an isotype class switch. Switching to IgA appears to occur more often than to IgG; also, switching can involve different IgG subclasses in individual patients. In many instances, these CLL-related gamma and alpha transcripts are much more plentiful than those of normal B cells that produce the same isotype. These switched transcripts do not reveal evidence for the accumulation of significant numbers of new V(H) gene mutations. The cellular data indicate that B cells with lesser amounts of surface membrane IgD and higher IgM/IgD ratios are more likely to undergo this switching process. Furthermore, B cells expressing IgG and IgA of the same idiotype or V(H) family and the same CDR3 length as those of the CLL IgM+ clone can be identified in the blood of patients studied using multiparameter immunofluorescence analyses. Collectively, these data suggest that not all members of a B-CLL clone are frozen at the surface membrane Ig-expressing stage of B cell maturation, and that some members can switch to the production of non-IgM isotypes. The occurrence of switching without the accumulation of V gene mutations indicates that the processes of differentiation and diversification are not linked.

Authors

F Fais, B Sellars, F Ghiotto, X J Yan, M Dono, S L Allen, D Budman, K Dittmar, J Kolitz, S M Lichtman, P Schulman, M Schuster, V P Vinciguerra, K Rai, F K Stevenson, P K Gregersen, M Ferrarini, N Chiorazzi

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Year: 2024 2022 2021 2020 2018 2016 2014 2012 2011 2010 2005 2004 2003 2002 2001 2000 1999 1998 1997 Total
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Citations to this article (49)

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2024
Old and New Facts and Speculations on the Role of the B Cell Receptor in the Origin of Chronic Lymphocytic Leukemia
Bagnara D, Mazzarello AN, Ghiotto F, Colombo M, Cutrona G, Fais F, Ferrarini M
International journal of molecular sciences 2022
AID in Chronic Lymphocytic Leukemia: Induction and Action During Disease Progression
P Oppezzo, M Navarrete, N Chiorazzi
Frontiers in Oncology 2021
Monoclonal gammopathy and serum immunoglobulin levels as prognostic factors in chronic lymphocytic leukaemia
A Corbingi, I Innocenti, A Tomasso, R Pasquale, A Visentin, M Varettoni, E Flospergher, F Autore, F Morelli, L Trentin, G Reda, DG Efremov, L Laurenti
British Journal of Haematology 2020
Combined Influence of B-Cell Receptor Rearrangement and Somatic Hypermutation on B-Cell Class-Switch Fate in Health and in Chronic Lymphocytic Leukemia
VN Petrova, L Muir, PF McKay, GS Vassiliou, KG Smith, PA Lyons, CA Russell, CA Anderson, P Kellam, RJ Bashford-Rogers
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W Darwiche, B Gubler, JP Marolleau, H Ghamlouch
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Chronic lymphocytic leukemia B cells expressing AID display dissociation between class switch recombination and somatic hypermutation
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FEBS Letters 2002
Chronic Lymphocytic Leukemia B Cells Can Undergo Somatic Hypermutation and Intraclonal Immunoglobulin V H DJ H Gene Diversification
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Journal of Experimental Medicine 2002
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Immunoglobulin Heavy Chain Variable Region Gene Replacement as a Mechanism for Receptor Revision in Rheumatoid Arthritis Synovial Tissue B Lymphocytes
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Isotype switch variants reveal clonally related subpopulations in diffuse large B-cell lymphoma
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