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Role for low-affinity receptor for IgE (CD23) in normal and leukemic B-cell proliferation
S Fournier1, M Rubio, G Delespesse
1Allergy Research Laboratory, Notre-Dame Hospital Research Center, University of Montreal, Canada.
Insights
CD23 protein, particularly the type-B isoform, drives B-cell activation and proliferation. This finding is crucial for understanding normal and leukemic B-cell growth, especially in B chronic lymphocytic leukemia (B-CLL).
Area of Science:
- Immunology
- Molecular Biology
- Hematology
Background:
- CD23 gene is overexpressed in B chronic lymphocytic leukemia (B-CLL).
- CD23 expression is critical for normal B-cell activation.
- The role of CD23 isoforms in B-cell proliferation requires further investigation.
Purpose of the Study:
- To investigate the role of CD23 protein, specifically the type-B isoform, in B-cell activation and proliferation.
- To determine the effect of CD23 antisense oligonucleotides on B-cell growth.
- To elucidate the mechanism by which CD23 influences the cell cycle of normal and leukemic B cells.
Main Methods:
- Stimulation of normal B cells with anti-IgM (mlg) and interleukin-4.
- Treatment of B cells with CD23 antisense oligonucleotides.
- Analysis of CD23 protein expression and B-cell proliferation.
- Cell cycle analysis of B-CLL cells.
Main Results:
- Increased CD23 protein expression, mainly the type-B isoform, precedes B-cell DNA synthesis.
- CD23 antisense oligonucleotides enhanced B-cell proliferation and CD23 expression.
- Selective increase in CD23 type-B expression induced resting B-CLL cells to enter the cell cycle (G1 and S phases).
Conclusions:
- CD23 is a key molecule in normal and leukemic B-cell activation and growth.
- CD23 type-B isoform plays a significant role in promoting B-cell proliferation.
- Targeting CD23 may offer therapeutic strategies for B-CLL.
Abstract:
CD23 gene is overexpressed and abnormally regulated in the most frequent adult leukemic disorder, B chronic lymphocytic leukemia (B-CLL). Switch on and off in the upregulation of surface CD23 expression consistently occurs in the early stage of normal B-cell activation, suggesting a key role for CD23 in this process. We show here that, after ligation of mlg in the presence of interleukin-4, the increase of CD23 protein precedes B-cell DNA synthesis and mainly results from the strong induction of CD23 type-B isoform. Exposure of normal B cells to conventional or phosphorothioate-derivatized CD23 antisense oligonucleotides (predominantly type B) significantly augments B-cell proliferation induced by antigen receptor stimulation or direct contact with activated T cells. Unexpectedly, CD23 antisense, but not sense, oligonucleotides specifically enhance rather than suppress CD23 expression on B cells. Finally, a selective increase in CD23 type-B expression provokes the entry of resting (Go) CLL B cells into G1 and S phase of the cell cycle in the absence of any other stimulus, whereas it synergizes with tumor necrosis factor-alpha to increase the number of activated B cells. These results provide compelling evidence that CD23 represents an important molecule directly involved in the process of normal or leukemic B-cell activation and growth.
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