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Published on: March 1, 2011
A method for investigating the role of homotypic adhesion in lymphocyte activation
1Department of Infectious and Tropical Diseases, London School of Hygiene and Tropical Medicine, Keppel Street, WC1E 7HT, London, UK.
Insights
B cell homotypic aggregation is not required for proliferation following CD40 activation. Instead, clustering appears to be a consequence of activation, potentially involving novel chemokines.
Area of Science:
- Immunology
- Cell Biology
Background:
- B cells form homotypic aggregates upon CD40 activation, particularly with costimuli like anti-IgM.
- Blocking homotypic aggregation with anti-LFA-1alpha inhibits CD40-stimulated B cell proliferation, suggesting a role for cell-cell interactions.
Purpose of the Study:
- To investigate whether homotypic aggregation is essential for CD40-mediated B cell proliferation.
- To determine the mechanism behind the inhibitory effects of anti-LFA-1 on B cell activation.
Main Methods:
- Developed a semi-solid agarose culture system to prevent cell-cell interactions.
- Stimulated murine B cells with anti-CD40 and other mitogens in both liquid and semi-solid media.
- Assessed B cell proliferation and the effects of anti-LFA-1.
Main Results:
- B cells proliferated normally to anti-CD40 and other stimuli in agarose, indicating aggregation is not necessary.
- Anti-LFA-1 inhibited proliferation similarly in both liquid and semi-solid cultures.
- Anti-IgM-stimulated B cells were recruited into anti-CD40-induced clusters.
Conclusions:
- Homotypic aggregation is not a prerequisite for CD40-stimulated B cell proliferation.
- The inhibitory effect of anti-LFA-1 may result from a negative signal, not blocked clustering.
- B cell clustering is a consequence of CD40 activation, possibly mediated by an unknown B cell-derived chemokine.
Abstract:
B cells activated via CD40 in vitro form striking homotypic aggregates, especially in the presence of costimuli such as anti-IgM, whereas those stimulated by anti-IgM alone do not. Blocking aggregation with anti-LFA-1alpha also significantly inhibits CD40-stimulated B cell proliferation, suggesting that homotypic adhesion is important for B cell activation via this receptor. To investigate this we have developed a culture system where murine B cells are stimulated in semi-solid agarose, which prevents cell-cell interactions. B cells respond to various mitogenic stimuli, including anti-CD40, in an essentially normal fashion when cultured in agarose. Furthermore, anti-LFA-1 exerts similar inhibitory effects on B cell proliferation regardless of whether the cells are in liquid, or semi-solid medium. These results indicate that homotypic aggregation is not necessary for CD40-stimulated B cell proliferation and the inhibitory effects of anti-LFA-1 could, therefore, be due to the delivery of a negative signal via this integrin, rather than as a result of inhibition of B cell clustering. Furthermore, reaggregation experiments indicated that anti-IgM-stimulated B cells are attracted into anti-CD40-generated clusters, even though they do not form clusters themselves. Taken together these results indicate that clustering is a consequence of B cell activation via CD40, rather than a necessary prelude to B cell proliferation. We postulate that homotypic aggregation may involve an unknown B cell-derived chemokine.
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