Sensing their plasma membrane curvature allows migrating cells to circumvent obstacles.
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ABSTRACT: To navigate through diverse tissues, migrating cells must balance persistent self-propelled motion with adaptive behaviors to circumvent obstacles. We identify a curvature-sensing mechanism underlying obstacle evasion in immune-like cells. Specifically, we propose that actin polymerization at the advancing edge of migrating cells is inhibited by the curvature-sensitive BAR domain protein Snx33 in regions with inward plasma membrane curvature. The genetic perturbation of this machinery reduces the cells' capacity to evade obstructions combined with faster and more persistent cell migration in obstacle-free environments. Our results show how cells can read out their surface topography and utilize actin and plasma membrane biophysics to interpret their environment, allowing them to adaptively
SUBMITTER: Sitarska E
PROVIDER: S-EPMC10499897 | biostudies-literature | 2023 Sep
REPOSITORIES: biostudies-literature
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