Calcium signaling mediates mechanotransduction at the multicellular stage of Dictyostelium discoideum
Hashimura, H.; Morimoto, Y. V.; Hirayama, Y.; Ueda, M.
Show abstract
Calcium acts as a second messenger and regulates cellular functions, including cell motility. In Dictyostelium discoideum, the cytosolic calcium level oscillates synchronously, and calcium signal waves propagate in the cell population during the early stages of development, including aggregation. At the unicellular phase, the calcium response through Piezo channels also functions in mechanosensing. However, calcium signaling dynamics during multicellular morphogenesis is still unclear. Here, live-imaging of cytosolic calcium levels revealed that calcium wave propagation, depending on cAMP relay, temporarily disappeared at the onset of multicellular body formation. Alternatively, the occasional burst of calcium signals and their propagation were observed in both anterior and posterior regions of migrating multicellular bodies. Calcium signaling in multicellular bodies occurred in response to mechanical stimulation. Both pathways, calcium release from the endoplasmic reticulum via IP3 receptor and calcium influx from outside the cell, were involved in calcium waves induced by mechanical stimuli. These show that calcium signaling works on mechanosensing in both the unicellular and multicellular phases of Dictyostelium using different molecular mechanisms during development. Summary statementFluorescence imaging revealed that calcium signaling via both endoplasmic reticulum and extracellular pathways plays an important role in mechanosensing during the multicellular stage of Dictyostelium.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Small Interactor of PKD2 (SIP), a novel PKD2-related single-pass transmembrane protein, is required for proteolytic processing and ciliary import of Chlamydomonas PKD2 94%
- Lrrcc1 and Ccdc61 are conserved effectors of multiciliated cell function 94%
- S100A11 promotes focal adhesion disassembly via myosin II-driven contractility and Piezo1-mediated Ca2+ entry 94%
Similar papers in this journal
- Temporal coordination of collective migration and lumen formation by antagonism between two nuclear receptors 94%
- Endodermal cells use contact inhibition of locomotion to achieve uniform cell dispersal during zebrafish gastrulation 92%
- Single-cell Senseless protein analysis reveals metastable states during the transition to a sensory organ fate 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.