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Publication : Differential regulation of mast cell degranulation versus cytokine secretion by the actin regulatory proteins Coronin1a and Coronin1b.

First Author  Föger N Year  2011
Journal  J Exp Med Volume  208
Issue  9 Pages  1777-87
PubMed ID  21844203 Mgi Jnum  J:177785
Mgi Id  MGI:5296275 Doi  10.1084/jem.20101757
Citation  Foger N, et al. (2011) Differential regulation of mast cell degranulation versus cytokine secretion by the actin regulatory proteins Coronin1a and Coronin1b. J Exp Med 208(9):1777-87
abstractText  Mast cell (MC) activation via aggregation of the high affinity IgE receptor (FcepsilonRI) causes degranulation and release of proinflammatory mediators in a process that involves the reorganization of the actin cytoskeleton. However, the regulatory pathways and the molecular links between cytoskeletal changes and MC function are incompletely understood. In this study, we provide genetic evidence for a critical role of the actin-regulatory proteins Coronin1a (Coro1a) and Coro1b on exocytic pathways in MCs: Coro1a(-/-) bone marrow-derived MCs exhibit increased FcepsilonRI-mediated degranulation of secretory lysosomes but significantly reduced secretion of cytokines. Hyperdegranulation of Coro1a(-/-) MCs is further augmented by the additional loss of Coro1b. In vivo, Coro1a(-/-)Coro1b(-/-) mice displayed enhanced passive cutaneous anaphylaxis. Functional reconstitution assays revealed that the inhibitory effect of Coro1a on MC degranulation strictly correlates with cortical localization of Coro1a, requires its filamentous actin-binding activity, and is regulated by phosphorylation of Ser2 of Coro1a. Thus, coronin proteins, and in turn the actin cytoskeleton, exhibit a functional dichotomy as differential regulators of degranulation versus cytokine secretion in MC biology.
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