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March 16, 20260 citationsOpen Access

Spatially Distinct Myosin II Architectures Regulate Protrusion Dynamics and Directional Persistence during Immune Cell Migration

NMNicolas MélisDCDesu ChenECEmily Chen

Key Result

Spatially distinct non-muscle myosin II architectures at the leading edge and rear coordinate protrusion dynamics across time to stabilize directional migration of neutrophils.

Structured PICO

P
Population
Migrating neutrophils in vivo and in collagen matrices
I
Intervention
Pharmacological perturbations that redistribute non-muscle myosin II (NMII) activity
O
Outcome
Protrusion dynamics and directional persistencesurrogate

Spatially distinct non-muscle myosin II architectures coordinate protrusion dynamics across time to stabilize directional migration of neutrophils in complex environments.

Abstract

Abstract Directional persistence is essential for efficient immune cell migration in tissues, yet how cytoskeletal systems stabilize migration in complex three-dimensional environments remains unclear. Using intravital subcellular microscopy and quantitative analysis of membrane dynamics, we identify two spatially distinct architectures of non-muscle myosin II (NMII) that coordinate protrusion dynamics during neutrophil migration. In vivo and in collagen matrices, NMII assembles at the leading edge into lattice-like structures that are structurally and functionally distinct from rear contractile actomyosin bundles. Protrusion-resolved analyses reveal that directional persistence correlates strongly with protrusion lifetime and sustained NMII engagement, with rear NMII load showing the strongest association with protrusion persistence. Strikingly, directional migration is not determined by the abundance of favorable protrusions but by their temporal organization during migration. Pharmacological perturbations that redistribute NMII activity disrupt this temporal organization and alter migration trajectories. Together, these findings reveal that spatially distinct NMII architectures coordinate protrusion dynamics across time to stabilize directional migration in complex environments. Highlights Migrating neutrophils assemble spatially distinct myosin II architectures at the leading edge and rear Protrusion dynamics and directional persistence are linked to sustained myosin II engagement Directional migration emerges from the temporal organization of protrusion states rather than their abundance

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Cite This Study

Mélis et al. (2026) studied Immune cell migration. Pharmacological perturbations of NMII activity was evaluated on Protrusion dynamics and directional persistence. Spatially distinct non-muscle myosin II architectures at the leading edge and rear coordinate protrusion dynamics across time to stabilize directional migration of neutrophils.

synapsesocial.com/papers/6a1c29fb00ee29383e9d8cebhttps://doi.org/10.64898/2026.03.13.711384
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