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Abstract 438: Cholesterol biosynthesis is a critical metabolic dependency in pancreatic cancer

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Abstract Pancreatic cancer is rapidly rising to become the 2nd leading cause of cancer deaths by 2020 in the USA. The rise in pancreatic cancer incidence is paralleled by the epidemic of obesity, type 2 diabetes, and associated increase in blood cholesterol, although mechanistic explanations for this are currently unknown. We and others have demonstrated that cancers with activated EGFR and KRAS signaling have increased demands for cholesterol and are vulnerable to interference with cholesterol uptake or endogenous cholesterol biosynthesis. We recently identified a metabolic step in the distal cholesterol pathway, mediated by SC4MOL and NSDHL enzymes, as a critical regulator of cell growth in the keratinocyte model of KRAS-induced carcinogenesis via the LXR agonistic effect of accumulating C4-methylsterols. Based on these preliminary data, we set out to test if pancreatic cancer initiation and progression depend on accelerated cholesterol biosynthesis in a genetic mouse model containing a conditional cholesterol pathway enzyme deficiency (conditional knockout of Nsdhlf/f) in the context of pancreatic cancer development in KPC mice (LSL-KrasG12D;Tp53f/f;Pdx1-Cre). Results: Conditional inactivation of NSDHL alone in pancreatic tissue during normal development produced no apparent phenotype. As expected, the NSDHL-sufficient KPC mice as well as heterozygous Nsdhlf/+ littermates did not survive beyond 8 weeks of age due to rapid development of progressive pancreatic tumors showing complete displacement of pancreatic tissue with adenocarcinoma and high-grade PanIN lesions. Contrastingly, the survival of pancreatic conditional NSDHL-null mice was significantly extended beyond the median survival of 50 days in NSDHL-sufficient age-matched controls. Furthermore, the progression of pancreatic lesions from ADM to PanIN3 was remarkably delayed on NSDHL-null background, with only a proportion of animals developing adenocarcinoma. Evaluation of pancreatic tissues revealed a dramatic reduction of tumor-induced desmoplasia at all stages of pancreatic cancer development. Our ongoing studies will address the role of cholesterol metabolism in pancreatic cancer progression via regulation of tumor-specific production of stroma-recruiting growth factors. Conclusions: Our studies demonstrated for the first time essential genetic evidence for metabolic dependency of pancreatic cancer on cholesterol metabolism. We identified NSDHL as a critical target in the endogenous pathway of cholesterol biosynthesis, and determined that blockade of NSDHL has dramatic consequences on the reciprocal signaling between the KRAS-transformed pancreatic cancer cells and the stroma. Citation Format: Linara Gabitova, Alena Klochkova, Diana Restifo, Aleksandra Mazitova, Edna Cukierman, Tiffiney Hartman, Igor Astsaturov. Cholesterol biosynthesis is a critical metabolic dependency in pancreatic cancer [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 438. doi:10.1158/1538-7445.AM2017-438
Title: Abstract 438: Cholesterol biosynthesis is a critical metabolic dependency in pancreatic cancer
Description:
Abstract Pancreatic cancer is rapidly rising to become the 2nd leading cause of cancer deaths by 2020 in the USA.
The rise in pancreatic cancer incidence is paralleled by the epidemic of obesity, type 2 diabetes, and associated increase in blood cholesterol, although mechanistic explanations for this are currently unknown.
We and others have demonstrated that cancers with activated EGFR and KRAS signaling have increased demands for cholesterol and are vulnerable to interference with cholesterol uptake or endogenous cholesterol biosynthesis.
We recently identified a metabolic step in the distal cholesterol pathway, mediated by SC4MOL and NSDHL enzymes, as a critical regulator of cell growth in the keratinocyte model of KRAS-induced carcinogenesis via the LXR agonistic effect of accumulating C4-methylsterols.
Based on these preliminary data, we set out to test if pancreatic cancer initiation and progression depend on accelerated cholesterol biosynthesis in a genetic mouse model containing a conditional cholesterol pathway enzyme deficiency (conditional knockout of Nsdhlf/f) in the context of pancreatic cancer development in KPC mice (LSL-KrasG12D;Tp53f/f;Pdx1-Cre).
Results: Conditional inactivation of NSDHL alone in pancreatic tissue during normal development produced no apparent phenotype.
As expected, the NSDHL-sufficient KPC mice as well as heterozygous Nsdhlf/+ littermates did not survive beyond 8 weeks of age due to rapid development of progressive pancreatic tumors showing complete displacement of pancreatic tissue with adenocarcinoma and high-grade PanIN lesions.
Contrastingly, the survival of pancreatic conditional NSDHL-null mice was significantly extended beyond the median survival of 50 days in NSDHL-sufficient age-matched controls.
Furthermore, the progression of pancreatic lesions from ADM to PanIN3 was remarkably delayed on NSDHL-null background, with only a proportion of animals developing adenocarcinoma.
Evaluation of pancreatic tissues revealed a dramatic reduction of tumor-induced desmoplasia at all stages of pancreatic cancer development.
Our ongoing studies will address the role of cholesterol metabolism in pancreatic cancer progression via regulation of tumor-specific production of stroma-recruiting growth factors.
Conclusions: Our studies demonstrated for the first time essential genetic evidence for metabolic dependency of pancreatic cancer on cholesterol metabolism.
We identified NSDHL as a critical target in the endogenous pathway of cholesterol biosynthesis, and determined that blockade of NSDHL has dramatic consequences on the reciprocal signaling between the KRAS-transformed pancreatic cancer cells and the stroma.
Citation Format: Linara Gabitova, Alena Klochkova, Diana Restifo, Aleksandra Mazitova, Edna Cukierman, Tiffiney Hartman, Igor Astsaturov.
Cholesterol biosynthesis is a critical metabolic dependency in pancreatic cancer [abstract].
In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC.
Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 438.
doi:10.
1158/1538-7445.
AM2017-438.

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