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Immunology

Defining origins of malignant B cells: a new circulating normal human IgM+D+ B-cell subset lacking CD27 expression and displaying somatically mutated IGHV genes as a relevant memory population

Abstract

In probing the cell of origin in malignant B cells, an imprint of somatic hypermutation (SHM) in immunoglobulin (Ig) variable (V) region genes delineates antigen encounter, and identifying the precise pathway generating SHM in the normal B-cell counterpart becomes relevant. SHM remains the definitive memory imprint in normal human B cells, but CD27 expression also delineates memory. Recently, dye extrusion adenosine triphosphate-binding transporter assays identified circulating isotype-switched memory B cells that lacked CD27, yet exhibited low levels of SHM. To extend findings, we report a pre-switched CD27−ve circulating memory B-cell population in normal blood using comparable assays, and isolated CD19+IgM+D+CD27−ve cells (>99% purity) for the analysis of IGHV5/IGHV3-IGHM transcripts. Of these (n=334), 78% were germ line and naive B cell derived. Strikingly, 21.9% of the transcripts were mutated. They showed 3–5 mutations (13.5% of sequences) and >5 mutations (8.4% of sequences) per transcript. Accrual of mutations in a subset of CD19+IgM+D+CD27−ve cells define a new circulating pre-switched memory B-cell pool, present in substantial numbers in the population harboring naive B cells. These CD19+IgM+D+CD27−ve memory B cells may have a distinct lineage and function, and seem relevant to understanding origins of malignant B cells, in particular those of hairy cell leukemia cells, which display mutated V genes yet lack CD27 expression.

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References

  1. Honjo T, Kinoshita K, Muramatsu M . Molecular mechanism of class switch recombination: linkage with somatic hypermutation. Annu Rev Immunol 2002; 20: 165–196.

    Article  CAS  Google Scholar 

  2. Klein U, Rajewsky K, Kuppers R . Human immunoglobulin (Ig)M+IgD+ peripheral blood B cells expressing the CD27 cell surface antigen carry somatically mutated variable region genes: CD27 as a general marker for somatically mutated (memory) B cells. J Exp Med 1998; 188: 1679–1689.

    Article  CAS  Google Scholar 

  3. Toellner KM, Jenkinson WE, Taylor DR, Khan M, Sze DM, Sansom DM et al. Low-level hypermutation in T cell-independent germinal centers compared with high mutation rates associated with T cell-dependent germinal centers. J Exp Med 2002; 195: 383–389.

    Article  CAS  Google Scholar 

  4. Forconi F, Sozzi E, Rossi D, Sahota SS, Amato T, Raspadori D et al. Selective influences in the expressed immunoglobulin heavy and light chain gene repertoire in hairy cell leukemia. Haematologica 2008; 93: 697–705.

    Article  CAS  Google Scholar 

  5. Forconi F, Raspadori D, Lenoci M, Lauria F . Absence of surface CD27 distinguishes hairy cell leukemia from other leukemic B-cell malignancies. Haematologica 2005; 90: 266–268.

    PubMed  Google Scholar 

  6. Kriangkum J, Taylor BJ, Treon SP, Mant MJ, Belch AR, Pilarski LM . Clonotypic IgM V/D/J sequence analysis in Waldenstrom macroglobulinemia suggests an unusual B-cell origin and an expansion of polyclonal B cells in peripheral blood. Blood 2004; 104: 2134–2142.

    Article  CAS  Google Scholar 

  7. Babbage G, Townsend M, Zojer N, Mockridge IC, Garand R, Barlogie B et al. IgM-expressing Waldenstrom's macroglobulinemia tumor cells reveal a potential for isotype switch events in vivo. Leukemia 2007; 21: 827–830.

    Article  CAS  Google Scholar 

  8. Wirths S, Lanzavecchia A . ABCB1 transporter discriminates human resting naive B cells from cycling transitional and memory B cells. Eur J Immunol 2005; 35: 3433–3441.

    Article  CAS  Google Scholar 

  9. Fecteau JF, Côté G, Néron S . A new memory CD27-IgG+ B-cell population in peripheral blood expressing VH genes with low frequency of somatic mutation. J Immunol 2006; 177: 3728–3736.

    Article  CAS  Google Scholar 

  10. Wei C, Anolik J, Cappione A, Zheng B, Pugh-Bernard A, Brooks J et al. A new population of cells lacking expression of CD27 represents a notable component of the B cell memory compartment in systemic lupus erythematosus. J Immunol 2007; 178: 6624–6633.

    Article  CAS  Google Scholar 

  11. Forconi F, Sahota SS, Raspadori D, Ippoliti M, Babbage G, Lauria F et al. Hairy cell leukemia: at the crossroad of somatic mutation and isotype switch. Blood 2004; 104: 3312–3317.

    Article  CAS  Google Scholar 

  12. Giudicelli V, Chaume D, Lefranc MP . IMGT/V-QUEST, an integrated software program for immunoglobulin and T-cell receptor V-J and V-D-J rearrangement analysis. Nucleic Acids Res 2004; 32: W435–W440.

    Article  CAS  Google Scholar 

  13. Marti G, Abbasi F, Raveche E, Rawstron AC, Ghia P, Aurran T et al. Overview of monoclonal B-cell lymphocytosis. Br J Haematol 2007; 139 (5): 701–708.

    Article  CAS  Google Scholar 

  14. Kolar GR, Mehta D, Pelayo R, Capra JD . A novel human B-cell subpopulation representing the initial germinal center population to express AID. Blood 2007; 109: 2545–2552.

    Article  CAS  Google Scholar 

  15. Ehrhardt GR, Hsu JT, Gartland L, Leu CM, Zhang S, Davis RS et al. Expression of the immunoregulatory molecule FcRH4 defines a distinctive tissue-based population of memory B cells. J Exp Med 2005; 202: 783–791.

    Article  CAS  Google Scholar 

  16. Marafioti T, Jones M, Facchetti F, Diss TC, Du MQ, Isaacson PG et al. Phenotype and genotype of interfollicular large B cells, a subpopulation of lymphocytes often with dendritic morphology. Blood 2003; 102: 2868–2876.

    Article  CAS  Google Scholar 

  17. Tangye SG, Good KL . Human IgM+CD27+ B cells: memory B cells or “memory” B cells? J Immunol 2007; 179: 13–19.

    Article  CAS  Google Scholar 

  18. Scheeren FA, Nagasawa M, Weijer K, Cupedo T, Kirberg J, Legrand N et al. T cell-independent development and induction of somatic hypermutation in human IgM+ IgD+ CD27+ B cells. J Exp Med 2008; 205: 2033–2042.

    Article  CAS  Google Scholar 

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Acknowledgements

This work was funded by the Leukaemia Research Fund (UK).

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Correspondence to S S Sahota.

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Weston-Bell, N., Townsend, M., Di Genova, G. et al. Defining origins of malignant B cells: a new circulating normal human IgM+D+ B-cell subset lacking CD27 expression and displaying somatically mutated IGHV genes as a relevant memory population. Leukemia 23, 2075–2080 (2009). https://doi.org/10.1038/leu.2009.178

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