Convergent Met and voltage-gated Ca 2+ channel signaling drives hypermigration of Toxoplasma -infected dendritic cells
Abstract
RasâErk MAPK signaling controls many of the principal pathways involved in metazoan cell motility, drives metastasis of multiple cancer types and is targeted in chemotherapy. However, its putative roles in immune cell functions or in infections have remained elusive. Here, using primary dendritic cells (DCs) in an infection model with the protozoan Toxoplasma gondii, we show that two pathways activated by infection converge on RasâErk MAPK signaling to promote migration of parasitized DCs. We report that signaling through the receptor tyrosine kinase Met (also known as HGF receptor) contributes to T. gondii-induced DC hypermotility. Furthermore, voltage-gated Ca2+ channel (VGCC, subtype CaV1.3) signaling impacted the migratory activation of DCs via calmodulinâcalmodulin kinase II. We show that convergent VGCC signaling and Met signaling activate the GTPase Ras to drive Erk1 and Erk2 (also known as MAPK3 and MAPK1, respectively) phosphorylation and hypermotility of T. gondii-infected DCs. The data provide a molecular basis for the hypermigratory mesenchymal-to-amoeboid transition (MAT) of parasitized DCs. This emerging concept suggests that parasitized DCs acquire metastasis-like migratory properties that promote infection-related dissemination.
Más información
| Título según SCOPUS: | Convergent Met and voltage-gated Ca2+ channel signaling drives hypermigration of Toxoplasma-infected dendritic cells |
| Título de la Revista: | Journal of Cell Science |
| Volumen: | 134 |
| Número: | 5 |
| Editorial: | COMPANY OF BIOLOGISTS LTD |
| Fecha de publicación: | 2021 |
| Idioma: | English |
| DOI: |
10.1242/jcs.241752 |
| Notas: | SCOPUS - WOS Core Collection ISI |