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Published on: February 3, 2013
The cytoplasmic domain of Ig alpha is necessary and sufficient to support efficient early B cell development
Kelly A Pike1, Sandra Iacampo, Jennifer E Friedmann
1Department of Immunology, University of Toronto, Toronto, Ontario, Canada.
Insights
The B cell receptor complex (BcR) cytoplasmic domains are crucial for B cell development. Igalpha cytoplasmic domain alone is sufficient for early B cell development, initiating subsequent stages.
Area of Science:
- Immunology
- Developmental Biology
- Cell Biology
Background:
- The B cell receptor complex (BcR) is vital for B lymphocyte function and development.
- Surface BcR expression is a critical checkpoint in B cell development, but the roles of its chains are debated.
Purpose of the Study:
- To investigate the functional requirements of B cell receptor (BcR) complex chains during early B cell development.
- To determine the specific roles of the Igalpha and Igbeta cytoplasmic domains in B cell development.
Main Methods:
- Retroviral gene transfer was used to introduce BcR components into chicken B cell precursors.
- A chimeric heterodimer of chicken Igalpha/Igbeta cytoplasmic domains with murine CD8 extracellular domains was engineered.
- B cell development stages, including bursal colonization, clonal expansion, and gene conversion, were assessed.
Main Results:
- Expression of a chimeric heterodimer containing BcR cytoplasmic domains supported early B cell development.
- The cytoplasmic domain of Igalpha alone was sufficient to support B cell development efficiently.
- The cytoplasmic domain of Igbeta required Igalpha to support B cell development, and Igalpha's function depended on its immunoreceptor tyrosine-based activation motif.
Conclusions:
- The cytoplasmic domain of Igalpha is both necessary and sufficient for early B cell development.
- Surface IgM expression may facilitate the localization of the Igalpha cytoplasmic domain to the cell surface, initiating B cell development.
- This study elucidates the critical role of Igalpha in initiating B cell development pathways.
Abstract:
The B cell receptor complex (BcR) is essential for normal B lymphocyte function, and surface BcR expression is a crucial checkpoint in B cell development. However, functional requirements for chains of the BcR during development remain controversial. We have used retroviral gene transfer to introduce components of the BcR into chicken B cell precursors during embryonic development. A chimeric heterodimer, in which the cytoplasmic domains of chicken Igalpha and Igbeta are expressed by fusion with the extracellular and transmembrane domains of murine CD8alpha and CD8beta, respectively, targeted the cytoplasmic domains of the BcR to the cell surface in the absence of extracellular BcR domains. Expression of this chimeric heterodimer supported all early stages of embryo B cell development: bursal colonization, clonal expansion, and induction of repertoire diversification by gene conversion. Expression of the cytoplasmic domain of Igalpha, in the absence of the cytoplasmic domain of Igbeta, was not only necessary, but sufficient to support B cell development as efficiently as the endogenous BcR. In contrast, expression of the cytoplasmic domain of Igbeta in the absence of the cytoplasmic domain of Igalpha failed to support B cell development. The ability of the cytoplasmic domain of Igalpha to support early B cell development required a functional Igalpha immunoreceptor tyrosine-based activation motif. These results support a model in which expression of surface IgM following productive V(D)J recombination in developing B cell precursors serves to chaperone the cytoplasmic domain of Igalpha to the B cell surface, thereby initiating subsequent stages of development.
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