Extracellular matrix stiffness regulates degradation of MST2 via SCF ßTrCP.
Biochim Biophys Acta Gen Subj
; 1866(12): 130238, 2022 Dec.
Article
en En
| MEDLINE
| ID: mdl-36044955
The Hippo pathway plays central roles in relaying mechanical signals during development and tumorigenesis, but how the proteostasis of the Hippo kinase MST2 is regulated remains unknown. Here, we found that chemical inhibition of proteasomal proteolysis resulted in increased levels of MST2 in human breast epithelial cells. MST2 binds SCFßTrCP E3 ubiquitin ligase and silencing ßTrCP resulted in MST2 accumulation. Site-directed mutagenesis combined with computational molecular dynamics studies revealed that ßTrCP binds MST2 via a non-canonical degradation motif. Additionally, stiffer extracellular matrix, as well as hyperactivation of integrins resulted in enhanced MST2 degradation mediated by integrin-linked kinase (ILK) and actomyosin stress fibers. Our study uncovers the underlying biochemical mechanisms controlling MST2 degradation and underscores how alterations in the microenvironment rigidity regulate the proteostasis of a central Hippo pathway component.
Palabras clave
Texto completo:
1
Colección:
01-internacional
Base de datos:
MEDLINE
Asunto principal:
Ubiquitina-Proteína Ligasas
/
Proteínas con Repetición de beta-Transducina
/
Serina-Treonina Quinasa 3
Límite:
Humans
Idioma:
En
Revista:
Biochim Biophys Acta Gen Subj
Año:
2022
Tipo del documento:
Article
País de afiliación:
Estados Unidos
Pais de publicación:
Países Bajos