An AMPK phosphoregulated RhoGEF feedback loop tunes cortical flow–driven amoeboid migration in vivo

Author:

Lin Benjamin12ORCID,Luo Jonathan12ORCID,Lehmann Ruth123ORCID

Affiliation:

1. Skirball Institute and Department of Cell Biology, NYU Grossman School of Medicine, New York, NY 10016, USA.

2. Whitehead Institute for Biomedical Research, Cambridge, MA 02142, USA.

3. Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

Abstract

Development, morphogenesis, immune system function, and cancer metastasis rely on the ability of cells to move through diverse tissues. To dissect migratory cell behavior in vivo, we developed cell type–specific imaging and perturbation techniques for Drosophila primordial germ cells (PGCs). We find that PGCs use global, retrograde cortical actin flows for orientation and propulsion during guided developmental homing. PGCs use RhoGEF2, a RhoA-specific RGS-RhoGEF, as a dose-dependent regulator of cortical flow through a feedback loop requiring its conserved PDZ and PH domains for membrane anchoring and local RhoA activation. This feedback loop is regulated for directional migration by RhoGEF2 availability and requires AMPK rather than canonical Gα 12/13 signaling. AMPK multisite phosphorylation of RhoGEF2 near a conserved EB1 microtubule-binding SxIP motif releases RhoGEF2 from microtubule-dependent inhibition. Thus, we establish the mechanism by which global cortical flow and polarized RhoA activation can be dynamically adapted during natural cell navigation in a changing environment.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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