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Published on: July 21, 2018
Metabolic Rewiring by Loss of Sirt5 Promotes Kras-Induced Pancreatic Cancer Progression
Tuo Hu1, Surendra K Shukla2, Enza Vernucci2
1The Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center, Omaha, Nebraska; Department of Colorectal Surgery, Guangdong Provincial Key Laboratory of Colorectal and Pelvic Floor Diseases, The Sixth Affiliated Hospital, Sun Yat-sen University, Guangzhou, Guangdong, China.
Background & Aims:
SIRT5 plays pleiotropic roles via post-translational modifications, serving as a tumor suppressor, or an oncogene, in different tumors. However, the role SIRT5 plays in the initiation and progression of pancreatic ductal adenocarcinoma (PDAC) remains unknown.
Methods:
Published datasets and tissue arrays with SIRT5 staining were used to investigate the clinical relevance of SIRT5 in PDAC. Furthermore, to define the role of SIRT5 in the carcinogenesis of PDAC, we generated autochthonous mouse models with conditional Sirt5 knockout. Moreover, to examine the mechanistic role of SIRT5 in PDAC carcinogenesis, SIRT5 was knocked down in PDAC cell lines and organoids, followed by metabolomics and proteomics studies. A novel SIRT5 activator was used for therapeutic studies in organoids and patient-derived xenografts.
Results:
SIRT5 expression negatively regulated tumor cell proliferation and correlated with a favorable prognosis in patients with PDAC. Genetic ablation of Sirt5 in PDAC mouse models promoted acinar-to-ductal metaplasia, precursor lesions, and pancreatic tumorigenesis, resulting in poor survival. Mechanistically, SIRT5 loss enhanced glutamine and glutathione metabolism via acetylation-mediated activation of GOT1. A selective SIRT5 activator, MC3138, phenocopied the effects of SIRT5 overexpression and exhibited antitumor effects on human PDAC cells. MC3138 also diminished nucleotide pools, sensitizing human PDAC cell lines, organoids, and patient-derived xenografts to gemcitabine.
Conclusions:
Collectively, we identify SIRT5 as a key tumor suppressor in PDAC, whose loss promotes tumorigenesis through increased noncanonic use of glutamine via GOT1, and that SIRT5 activation is a novel therapeutic strategy to target PDAC.
Insights
SIRT5 acts as a tumor suppressor in pancreatic cancer. Loss of SIRT5 promotes pancreatic ductal adenocarcinoma (PDAC) development, but activating SIRT5 with MC3138 shows therapeutic potential against PDAC.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Sirtuin 5 (SIRT5) has diverse roles in cancer, acting as either a tumor suppressor or oncogene depending on the tumor type.
- The specific function of SIRT5 in the initiation and progression of pancreatic ductal adenocarcinoma (PDAC) is not well understood.
Purpose of the Study:
- To investigate the clinical significance of SIRT5 in PDAC.
- To elucidate the role of SIRT5 in PDAC carcinogenesis and identify potential therapeutic strategies.
Main Methods:
- Analysis of published datasets and tissue arrays for SIRT5 expression in PDAC.
- Generation of autochthonous mouse models with conditional Sirt5 knockout.
- SIRT5 knockdown in PDAC cell lines and organoids, followed by metabolomics and proteomics.
- Evaluation of a novel SIRT5 activator (MC3138) in preclinical models.
Main Results:
- SIRT5 expression negatively correlates with tumor proliferation and predicts a better prognosis in PDAC patients.
- Sirt5 ablation in mice accelerates PDAC initiation, progression, and reduces survival.
- SIRT5 loss enhances glutamine metabolism via GOT1 activation, promoting tumorigenesis.
- The SIRT5 activator MC3138 demonstrates antitumor effects and sensitizes PDAC cells to gemcitabine.
Conclusions:
- SIRT5 functions as a critical tumor suppressor in PDAC.
- Loss of SIRT5 promotes PDAC through enhanced glutamine metabolism via GOT1.
- SIRT5 activation represents a promising therapeutic strategy for PDAC treatment.
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