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Functional role of SGK3 in PI3K/Pten driven liver tumor development.

Authors :
Cao, Hui
Cao, Hui
Xu, Zhong
Wang, Jingxiao
Cigliano, Antonio
Pilo, Maria G
Ribback, Silvia
Zhang, Shu
Qiao, Yu
Che, Li
Pascale, Rosa M
Calvisi, Diego F
Chen, Xin
Cao, Hui
Cao, Hui
Xu, Zhong
Wang, Jingxiao
Cigliano, Antonio
Pilo, Maria G
Ribback, Silvia
Zhang, Shu
Qiao, Yu
Che, Li
Pascale, Rosa M
Calvisi, Diego F
Chen, Xin
Source :
BMC cancer; vol 19, iss 1, 343; 1471-2407
Publication Year :
2019

Abstract

BackgroundHepatocellular carcinoma (HCC) is a leading cause of cancer related deaths worldwide. The PI3K cascade is one of the major signaling pathways underlying HCC development and progression. Activating mutations of PI3K catalytic subunit alpha (PIK3CA) and/or loss of Pten often occur in human HCCs. Serum and glucocorticoid kinase 3 (SGK3) belongs to the SGK family of AGK kinases and functions in parallel to AKT downstream of PI3K. Previous studies have shown that SGK3 may be the major kinase responsible for the oncogenic potential of PIK3CA helical domain mutants, such as PIK3CA(E545K), but not kinase domain mutants, such as PIK3CA(H1047R).MethodsWe investigated the functional contribution of SGK3 in mediating activated PIK3CA mutant or loss of Pten induced HCC development using Sgk3 knockout mice.ResultsWe found that ablation of Sgk3 does not affect PIK3CA(H1047R) or PIK3CA(E545K) induced lipogenesis in the liver. Using PIK3CA(H1047R)/c-Met, PIK3CA(E545K)/c-Met, and sgPten/c-Met murine HCC models, we also demonstrated that deletion of Sgk3 moderately delays PIK3CA(E545K)/c-Met driven HCC, while not affecting PIK3CA(H1047R)/c-Met or sgPten/c-Met HCC formation in mice. Similarly, in human HCC cell lines, silencing of SGK3 reduced PIK3CA(E545K) -but not PIK3CA(H1047R)- induced accelerated tumor cell proliferation.ConclusionAltogether, our data suggest that SGK3 plays a role in transducing helical domain mutant PIK3CA signaling during liver tumor development.

Details

Database :
OAIster
Journal :
BMC cancer; vol 19, iss 1, 343; 1471-2407
Notes :
application/pdf, BMC cancer vol 19, iss 1, 343 1471-2407
Publication Type :
Electronic Resource
Accession number :
edsoai.on1341878173
Document Type :
Electronic Resource