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Zeb1 affects epithelial cell adhesion by diverting glycosphingolipid metabolism.


ABSTRACT: This study proposes that the transcription factor Zeb1 modulates epithelial cell adhesion by diverting glycosphingolipid metabolism. Zeb1 promotes expression of a-series glycosphingolipids via regulating expression of GM3 synthase (St3gal5), which mechanistically involves Zeb1 binding to the St3gal5 promoter as well as suppressing microRNA-mediated repression of St3gal5. Functionally, the repression of St3gal5 suffices to elevate intercellular adhesion and expression of distinct junction-associated proteins, reminiscent of knockdown of Zeb1. Conversely, overexpressing St3gal5 sensitizes cells towards TGF-β1-induced disruption of cell-cell interaction and partially antagonizes elevation of intercellular adhesion imposed by Zeb1 knockdown. These results highlight a direct connection of glycosphingolipid metabolism and epithelial cell adhesion via Zeb1.

SUBMITTER: Mathow D 

PROVIDER: S-EPMC4364871 | biostudies-other | 2015 Mar

REPOSITORIES: biostudies-other

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Zeb1 affects epithelial cell adhesion by diverting glycosphingolipid metabolism.

Mathow Daniel D   Chessa Federica F   Rabionet Mariona M   Kaden Sylvia S   Jennemann Richard R   Sandhoff Roger R   Gröne Hermann-Josef HJ   Feuerborn Alexander A  

EMBO reports 20150202 3


This study proposes that the transcription factor Zeb1 modulates epithelial cell adhesion by diverting glycosphingolipid metabolism. Zeb1 promotes expression of a-series glycosphingolipids via regulating expression of GM3 synthase (St3gal5), which mechanistically involves Zeb1 binding to the St3gal5 promoter as well as suppressing microRNA-mediated repression of St3gal5. Functionally, the repression of St3gal5 suffices to elevate intercellular adhesion and expression of distinct junction-associa  ...[more]

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