TRPM7 triggers Ca2+ sparks and invadosome formation in neuroblastoma cells
Daan Visser1, Michiel Langeslag, Katarzyna M Kedziora
1Division of Cell Biology I, The Netherlands Cancer Institute, 1066 CX Amsterdam, The Netherlands.
Abstract:
Cell migration depends on the dynamic formation and turnover of cell adhesions and is tightly controlled by actomyosin contractility and local Ca2+ signals. The divalent cation channel TRPM7 (Transient Receptor Potential cation channel, subfamily Melastatin, member 7) has recently received much attention as a regulator of cell adhesion, migration and (localized) Ca2+ signaling. Overexpression and knockdown of TRPM7 affects actomyosin contractility and the formation of cell adhesions such as invadosomes and focal adhesions, but the role of TRPM7-mediated Ca2+ signals herein is currently not understood. Using Total Internal Reflection Fluorescence (TIRF) Ca2+ fluorometry and a novel automated analysis routine we have addressed the role of Ca2+ in the control of invadosome dynamics in N1E-115 mouse neuroblastoma cells. We find that TRPM7 promotes the formation of highly repetitive and localized Ca2+ microdomains or "Ca2+ sparking hotspots" at the ventral plasma membrane. Ca2+ sparking appears strictly dependent on extracellular Ca2+ and is abolished by TRPM7 channel inhibitors such as waixenicin-A. TRPM7 inhibition also induces invadosome dissolution. However, invadosome formation is (functionally and spatially) dissociated from TRPM7-mediated Ca2+ sparks. Rather, our data indicate that TRPM7 affects actomyosin contractility and invadosome formation independent of Ca2+ influx.
Insights
Transient Receptor Potential cation channel, subfamily Melastatin, member 7 (TRPM7) regulates cell migration and invadosome dynamics. TRPM7 influences actomyosin contractility and invadosome formation independently of calcium signals.
Area of Science:
- Cell Biology
- Ion Channel Physiology
Background:
- Cell migration relies on dynamic cell adhesions, actomyosin contractility, and calcium signals.
- Transient Receptor Potential cation channel, subfamily Melastatin, member 7 (TRPM7) is implicated in cell adhesion, migration, and calcium signaling.
Purpose of the Study:
- To investigate the role of TRPM7-mediated calcium signals in controlling invadosome dynamics.
- To elucidate the relationship between TRPM7, calcium signaling, and actomyosin contractility in cell migration.
Main Methods:
- Utilized Total Internal Reflection Fluorescence (TIRF) Ca2+ fluorometry.
- Developed a novel automated analysis routine for invadosome dynamics.
- Employed TRPM7 channel inhibitors (e.g., waixenicin-A) and manipulated TRPM7 expression.
Main Results:
- TRPM7 promotes localized Ca2+ microdomains ('Ca2+ sparks') dependent on extracellular Ca2+.
- TRPM7 inhibition leads to invadosome dissolution.
- Invadosome formation is functionally and spatially dissociated from TRPM7-mediated Ca2+ sparks.
- TRPM7 impacts actomyosin contractility and invadosome formation independently of Ca2+ influx.
Conclusions:
- TRPM7 plays a crucial role in regulating invadosome dynamics and cell migration.
- TRPM7's influence on actomyosin contractility and invadosome formation is independent of its calcium signaling function.
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