Autocrine insulin pathway signaling regulates actin dynamics in cell wound repair

Author:

Nakamura MitsutoshiORCID,Verboon Jeffrey M.,Allen Tessa E.ORCID,Abreu-Blanco Maria TeresaORCID,Liu RaymondORCID,Dominguez Andrew N. M.ORCID,Delrow Jeffrey J.ORCID,Parkhurst Susan M.ORCID

Abstract

Cells are exposed to frequent mechanical and/or chemical stressors that can compromise the integrity of the plasma membrane and underlying cortical cytoskeleton. The molecular mechanisms driving the immediate repair response launched to restore the cell cortex and circumvent cell death are largely unknown. Using microarrays and drug-inhibition studies to assess gene expression, we find that initiation of cell wound repair in the Drosophila model is dependent on translation, whereas transcription is required for subsequent steps. We identified 253 genes whose expression is up-regulated (80) or down-regulated (173) in response to laser wounding. A subset of these genes were validated using RNAi knockdowns and exhibit aberrant actomyosin ring assembly and/or actin remodeling defects. Strikingly, we find that the canonical insulin signaling pathway controls actin dynamics through the actin regulators Girdin and Chickadee (profilin), and its disruption leads to abnormal wound repair. Our results provide new insight for understanding how cell wound repair proceeds in healthy individuals and those with diseases involving wound healing deficiencies.

Funder

National Institutes of Health

National Cancer Institute

Publisher

Public Library of Science (PLoS)

Subject

Cancer Research,Genetics (clinical),Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference114 articles.

1. Rehabilitation and the single cell;WM Bement;Current opinion in cell biology,2007

2. Wound repair: toward understanding and integration of single-cell and multicellular wound responses;KJ Sonnemann;Annu Rev Cell Dev Biol,2011

3. Into the breach: how cells cope with wounds;M Nakamura;Open Biol,2018

4. Coping with the inevitable: how cells repair a torn surface membrane;PL McNeil;Nature cell biology,2001

5. An emergency response team for membrane repair;PL McNeil;Nature reviews Molecular cell biology,2005

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