Nanotopography modulates intracellular excitable systems through cytoskeleton actuation
Yang, Q.; Miao, Y.; Banerjee, P.; Hourwitz, M. J.; Hu, M.; Qing, Q.; Iglesias, P. A.; Devreotes, P. N.; Fourkas, J. T.; Losert, W.
Show abstract
Cellular sensing of most environmental cues involves receptors that affect a signal-transduction excitable network (STEN), which is coupled to a cytoskeletal excitable network (CEN). We show that the mechanism of sensing of nanoridges is fundamentally different. CEN activity occurs preferentially on nanoridges, whereas STEN activity is constrained between nanoridges. In the absence of STEN, waves disappear, but long-lasting F-actin puncta persist along the ridges. When CEN is suppressed, wave propagation is no longer constrained by nanoridges. A computational model reproduces these experimental observations. Our findings indicate that nanotopography is sensed directly by CEN, whereas STEN is only indirectly affected due to a CEN-STEN feedback loop. These results explain why texture sensing is robust, and acts cooperatively with multiple other guidance cues in complex microenvironments. One-Sentence SummaryCells sense nanotopography directly through their cytoskeletal dynamics, in a reversal of traditional signaling pathway hierarchies.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Two-point optical manipulation reveals mechanosensitive remodeling of cell-cell contacts in vivo 96%
- Elucidating Chiral Myosin-Induced Actin Dynamics: From Single Filament Behavior to Collective Structures 96%
- Polymerization force-regulated actin filament-Arp23 complex interaction dominates self-adaptive cell migrations 96%
Similar papers in this journal
Similar papers in this journal
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.