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Keratin isoform shifts modulate motility signals during wound healing.


ABSTRACT: Keratin intermediate filaments form strong mechanical scaffolds that confer structural stability to epithelial tissues, but the reason this function requires a protein family with fifty-four isoforms is not understood. During skin wound healing, a shift in keratin isoform expression alters the composition of keratin filaments. How this change modulates cellular function to support epidermal remodeling remains unclear. We report an unexpected effect of keratin isoform variation on kinase signal transduction. Increased expression of wound-associated keratin 6A, but not of steady-state keratin 5, potentiated keratinocyte migration and wound closure without compromising epidermal stability by activating myosin motors. This pathway depended on isoform-specific interaction between intrinsically disordered keratin head domains and non-filamentous vimentin shuttling myosin-activating kinases. These results substantially expand the functional repertoire of intermediate filaments from their canonical role as mechanical scaffolds to include roles as signaling scaffolds that spatiotemporally organize signal transduction cascades depending on isoform composition.

SUBMITTER: Nanes BA 

PROVIDER: S-EPMC10187270 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Keratin isoform shifts modulate motility signals during wound healing.

Nanes Benjamin A BA   Bhatt Kushal K   Boujemaa-Paterski Rajaa R   Azarova Evgenia E   Munawar Sabahat S   Rajendran Divya D   Isogai Tadamoto T   Dean Kevin M KM   Medalia Ohad O   Danuser Gaudenz G  

bioRxiv : the preprint server for biology 20240421


Keratin intermediate filaments form strong mechanical scaffolds that confer structural stability to epithelial tissues, but the reason this function requires a protein family with 54 isoforms is not understood. During skin wound healing, a shift in keratin isoform expression alters the composition of keratin filaments. How this change modulates cellular function to support epidermal remodeling remains unclear. We report an unexpected effect of keratin isoform variation on kinase signal transduct  ...[more]

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