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TAZ promotes PC2 degradation through a SCFbeta-Trcp E3 ligase complex.


ABSTRACT: Studies of a TAZ knockout mouse reveal a novel function of the transcriptional regulator TAZ, that is, as a binding partner of the F-box protein beta-Trcp. TAZ-/- mice develop polycystic kidney disease (PKD) and emphysema. The calcium-permeable cation channel protein polycystin 2 (PC2) is overexpressed in kidneys of TAZ-/- mice as a result of decreased degradation via an SCF(beta-Trcp) E3 ubiquitin ligase pathway. Replacements of serines in a phosphodegron motif in TAZ prevent beta-Trcp binding and PC2 degradation. Coexpression of a cytoplasmic fragment of polycystin 1 blocks the PC2-TAZ interaction and prevents TAZ-mediated degradation of PC2. Depletion of TAZ in zebrafish also results in a cystic kidney accompanied by overexpression of PC2. These results establish a common role of TAZ across vertebrate species in a protein degradation pathway regulated by phosphorylation and implicate deficiencies in this pathway in the development of PKD.

SUBMITTER: Tian Y 

PROVIDER: S-EPMC2099608 | biostudies-literature | 2007 Sep

REPOSITORIES: biostudies-literature

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TAZ promotes PC2 degradation through a SCFbeta-Trcp E3 ligase complex.

Tian Yu Y   Kolb Robert R   Hong Jeong-Ho JH   Carroll John J   Li Dawei D   You John J   Bronson Roderick R   Yaffe Michael B MB   Zhou Jing J   Benjamin Thomas T  

Molecular and cellular biology 20070716 18


Studies of a TAZ knockout mouse reveal a novel function of the transcriptional regulator TAZ, that is, as a binding partner of the F-box protein beta-Trcp. TAZ-/- mice develop polycystic kidney disease (PKD) and emphysema. The calcium-permeable cation channel protein polycystin 2 (PC2) is overexpressed in kidneys of TAZ-/- mice as a result of decreased degradation via an SCF(beta-Trcp) E3 ubiquitin ligase pathway. Replacements of serines in a phosphodegron motif in TAZ prevent beta-Trcp binding  ...[more]

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