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New Regulatory Roles of Galectin-3 in High-Affinity IgE Receptor Signaling.


ABSTRACT: Aggregation of the high-affinity receptor for IgE (Fc?RI) in mast cells initiates activation events that lead to degranulation and release of inflammatory mediators. To better understand the signaling pathways and genes involved in mast cell activation, we developed a high-throughput mast cell degranulation assay suitable for RNA interference experiments using lentivirus-based short hairpin RNA (shRNA) delivery. We tested 432 shRNAs specific for 144 selected genes for effects on Fc?RI-mediated mast cell degranulation and identified 15 potential regulators. In further studies, we focused on galectin-3 (Gal3), identified in this study as a negative regulator of mast cell degranulation. Fc?RI-activated cells with Gal3 knockdown exhibited upregulated tyrosine phosphorylation of spleen tyrosine kinase and several other signal transduction molecules and enhanced calcium response. We show that Gal3 promotes internalization of IgE-Fc?RI complexes; this may be related to our finding that Gal3 is a positive regulator of Fc?RI ubiquitination. Furthermore, we found that Gal3 facilitates mast cell adhesion and motility on fibronectin but negatively regulates antigen-induced chemotaxis. The combined data indicate that Gal3 is involved in both positive and negative regulation of Fc?RI-mediated signaling events in mast cells.

SUBMITTER: Bambouskova M 

PROVIDER: S-EPMC4836217 | biostudies-literature | 2016 May

REPOSITORIES: biostudies-literature

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New Regulatory Roles of Galectin-3 in High-Affinity IgE Receptor Signaling.

Bambouskova Monika M   Polakovicova Iva I   Halova Ivana I   Goel Gautam G   Draberova Lubica L   Bugajev Viktor V   Doan Aivi A   Utekal Pavol P   Gardet Agnes A   Xavier Ramnik J RJ   Draber Petr P  

Molecular and cellular biology 20160415 9


Aggregation of the high-affinity receptor for IgE (FcεRI) in mast cells initiates activation events that lead to degranulation and release of inflammatory mediators. To better understand the signaling pathways and genes involved in mast cell activation, we developed a high-throughput mast cell degranulation assay suitable for RNA interference experiments using lentivirus-based short hairpin RNA (shRNA) delivery. We tested 432 shRNAs specific for 144 selected genes for effects on FcεRI-mediated m  ...[more]

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