An Autocrine Regulator Loop Involving Tumor Necrosis Factor and Chemokine (C-C motif) Ligand-2 Is Activated by Transforming Growth Factor-β in Rat Basophilic Leukemia-2H3 Mast Cells
Dulce Avila-Rodríguez, Alfredo Ibarra-Sánchez, Marcela Sosa-Garrocho, Genaro Vázquez-Victorio, Cassandre Caligaris, Isabel Anaya-Rubio, Deisy Segura-Villalobos, Ulrich Blank, Claudia González-Espinosa, Marina Macias-Silva

TL;DR
This study shows how TGF-β activates a loop involving TNF and CCL-2 in mast cells, promoting inflammation in a specific cell type.
Contribution
The discovery of a TGF-β-induced autocrine loop involving TNF and CCL-2 in RBL-2H3 mast cells.
Findings
TGF-β induces CCL-2 secretion in RBL-2H3 mast cells but not in BMMCs.
CCL-2 secretion depends on actin rearrangements and early TNF secretion.
TNF signaling forms an autocrine loop that cooperates with TGF-β to promote CCL-2 release.
Abstract
TGF-β is a pleiotropic cytokine with both stimulatory and inhibitory effects on immune cells, depending on the microenvironmental context. It targets mast cells (MCs) in different physio-pathological conditions, such as inflammation and cancer. Besides acting as a potent chemoattractant for MCs, TGF-β regulates many other aspects of MCs’ physiology, including the secretion of many regulatory molecules. MCs secrete a variety of mediators, either pre-formed or newly synthesized, upon appropriate stimulation. CCL-2 chemokine and TNF cytokine act as potent chemoattractants for several immune cells and participate in the initiation of inflammatory responses by recruiting them to injured tissues. TGF-β regulates CCL-2 and TNF secretion in different cell types and under distinct cellular contexts. Here, we report that the treatment with TGF-β alone induces the secretion of both pre-formed and…
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Taxonomy
TopicsMast cells and histamine · Cell Adhesion Molecules Research · Chemokine receptors and signaling
