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Published on: November 19, 2019
GID2 Interacts With CDKN3 and Regulates Pancreatic Cancer Growth and Apoptosis
Xin Deng1, Jia Ma2, Wenyang Zhou3
1Pancreatic Endocrinology Ward, Department of General Surgery, Shengjing Hospital of China Medical University, Shenyang, Liaoning Province, China.
Abstract:
Dysregulation of deubiquitinase or ubiquitinase-mediated protein expression contributes to various diseases, including cancer. In the present study, we identified GID2, a subunit of the glucose-induced degradation-deficient (GID) complex that functions as an E3 ubiquitin ligase, as a potential key candidate gene in pancreatic cancer (PC) progression. The functional role and potential mechanism of GID2 in PC progression were investigated. Integrated bioinformatics analysis was performed to identify differentially expressed genes in PC based on the Gene Expression Profiling Interactive Analysis data sets. We found that GID2 was upregulated in PC tissues and that a high level of GID2 expression in clinical PC samples was positively associated with tumor stage and poor survival. Functional assays elucidated that GID2 expression promoted cell growth in vitro and accelerated tumor growth in vivo. GID2 knockdown effectively attenuated the malignant behaviors of PC cells and tumor formation. Furthermore, the protein network that interacted with the GID2 protein was constructed based on the GeneMANIA website. Cyclin-dependent kinase inhibitor 3 (CDKN3), a cell cycle regulator, was identified as a potential target of the GID2 protein. We revealed that GID2 positively regulated CDKN3 expression and inhibited CDKN3 ubiquitination. Furthermore, CDKN3 downregulation reversed the promoting effects of GID2 on PC progression. Therefore, the present study demonstrated that GID2 might regulate PC progression by maintaining the stability of the CDKN3 protein. These findings highlight the potential roles of the GID2/CDKN3 axis as a potential therapeutic target in PC.
Insights
Glucose-induced degradation-deficient 2 (GID2) promotes pancreatic cancer (PC) progression by stabilizing the cell cycle regulator CDKN3. Targeting the GID2/CDKN3 pathway may offer new therapeutic strategies for pancreatic cancer.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Dysregulation of protein expression via ubiquitination pathways is implicated in various diseases, including cancer.
- The glucose-induced degradation-deficient (GID) complex subunit GID2, an E3 ubiquitin ligase, is investigated for its role in pancreatic cancer (PC).
Purpose of the Study:
- To investigate the functional role and underlying mechanism of GID2 in pancreatic cancer progression.
- To identify potential therapeutic targets within the GID2 regulatory network in PC.
Main Methods:
- Integrated bioinformatics analysis of Gene Expression Profiling Interactive Analysis (GEPIA) datasets.
- In vitro and in vivo functional assays including GID2 knockdown.
- Protein-protein interaction network construction using GeneMANIA.
- Analysis of GID2 and CDKN3 ubiquitination levels.
Main Results:
- GID2 was found to be upregulated in PC tissues and associated with advanced tumor stage and poor survival.
- GID2 overexpression promoted PC cell growth in vitro and tumor growth in vivo, while knockdown attenuated these effects.
- GID2 was identified to stabilize Cyclin-dependent kinase inhibitor 3 (CDKN3) by inhibiting its ubiquitination, thereby promoting PC progression.
Conclusions:
- GID2 promotes pancreatic cancer progression by enhancing the stability of the cell cycle regulator CDKN3.
- The GID2/CDKN3 axis represents a potential therapeutic target for pancreatic cancer treatment.
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