Malignant assignment of neuronal Na+ leak channel, NALCN: governor of Ca2+ oscillations-encoded invadopodogenesis
Iamshanova, O.; Gordienko, D.; Folcher, A.; Bokhobza, A.; Shapovalov, G.; Mariot, P.; Allart, L.; Desruelles, E.; Spriet, C.; Diez, R.; Oullier, T.; Marionneau-Lambot, S.; Brisson, L.; Geraci, S.; Impheng, H.; Lehenkyi, V.; Haustrate, A.; Mihalache, A.; Gosset, P.; Chadet, S.; Lerondel, S.; Retif, S.; Le Mee, M.; Sobilo, J.; Roger, S.; Fromont, G.; Djamgoz, M.; Clezardin, P.; Monteil, A.; Prevarskaya, N.
Show abstract
Cytosolic Ca2+ oscillations provide signaling input to several effector systems of the cell. These include neuronal development, migration and networking. Although similar signaling events are hijacked by highly aggressive cancer cells, the complexity of the neuron-like remodeling in metastasis remains to be explored. Here, using a variety of in vitro and in vivo techniques we show that strongly metastatic prostate cancer cells acquire specific Na+/Ca2+ signature required for persistent invasion. We identify the neuronal Na+ leak channel, NALCN, at the hot spots of the Ca2+ wave initiation and invadopodia formation. Mechanistically, NALCN associates functionally with plasmalemmal and mitochondrial Na+/Ca2+ exchangers, reactive oxygen species and store-operated channels to generate intracellular Ca2+ oscillations. In turn, this stimulates the activity of protooncogene Src kinase co-localized with NALCN, actin remodeling and secretion of proteolytic enzymes, thus increasing an invasive potential of the cancer cells and metastatic lesions in vivo (accessed in pre-clinical models). Overall, our findings provide new insight into the signaling pathway specific for metastatic cells where NALCN plays the role of the persistent invasion "launcher and controller".
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- CYRI-B mediated macropinocytosis drives metastasis via lysophosphatidic acid receptor uptake 96%
- Extracellular ATP drives pancreatic cancer cell invasion via purinergic receptor-integrin interactions 96%
- Recruitment of KRAS downstream target ARL4C to membrane protrusions accelerates pancreatic cancer cell invasion. 96%
Similar papers in this journal
- Hexokinase 2 displacement from mitochondria-associated membranes prompts Ca2+-dependent death of cancer cells 96%
- BAZ2A association with H3K14ac is required for the transition of prostate cancer cells into a cancer stem-like state 95%
- The breast cancer oncogene IKKε coordinates mitochondrial function and serine metabolism 95%
Similar papers in this journal
- SKOR1 mediates FER kinase-dependent invasive growth of breast cancer cells 96%
- Collagen-VI expression is negatively mechanosensitive in pancreatic cancer cells and supports the metastatic niche 95%
- SHARPIN serine 146 phosphorylation mediates ARP2/3 interaction, cancer cell invasion, and metastasis 95%
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.