Vitamin‐C‐dependent downregulation of the citrate metabolism pathway potentiates pancreatic ductal adenocarcinoma growth arrest

Author:

Cenigaonandia‐Campillo Aiora1ORCID,Garcia‐Bautista Ana1,Rio‐Vilariño Anxo1,Cebrian Arancha1,del Puerto Laura1,Pellicer José Antonio2,Gabaldón José Antonio2,Pérez‐Sánchez Horacio3,Carmena‐Bargueño Miguel3,Meroño Carolina45,Traba Javier45,Fernandez‐Aceñero María Jesús6,Baños‐Herraiz Natalia7,Mozas‐Vivar Lorena7,Núñez‐Delicado Estrella2,Garcia‐Foncillas Jesús1ORCID,Aguilera Óscar18ORCID

Affiliation:

1. Translational Oncology Division, Oncohealth Institute IIS‐Fundación Jimenez Diaz‐UAM (Madrid) Spain

2. Molecular Recognition and Encapsulation Research Group (REM), Health Sciences Department Universidad Católica de Murcia (UCAM) Spain

3. Bioinformatics and High‐Performance Computing Research Group (BIO‐HPC), Computer Engineering Department Universidad Católica de Murcia (UCAM) Spain

4. Centro de Biología Molecular Severo Ochoa, Consejo Superior de Investigaciones Científicas Universidad Autónoma de Madrid (CSIC‐UAM) Spain

5. Instituto Universitario de Biología Molecular‐UAM (IUBM‐UAM), Departamento de Biología Molecular Universidad Autónoma de Madrid Spain

6. Hospital Clínico San Carlos (HCSC) Madrid Spain

7. Preclinical programe START Madrid‐FJD Hospital fundación Jiménez Díaz Spain

8. Universidad Católica de Murcia (UCAM) Spain

Abstract

In pancreatic ductal adenocarcinoma (PDAC), metabolic rewiring and resistance to standard therapy are closely associated. PDAC cells show enormous requirements for glucose‐derived citrate, the first rate‐limiting metabolite in the synthesis of new lipids. Both the expression and activity of citrate synthase (CS) are extraordinarily upregulated in PDAC. However, no previous relationship between gemcitabine response and citrate metabolism has been documented in pancreatic cancer. Here, we report for the first time that pharmacological doses of vitamin C are capable of exerting an inhibitory action on the activity of CS, reducing glucose‐derived citrate levels. Moreover, ascorbate targets citrate metabolism towards the de novo lipogenesis pathway, impairing fatty acid synthase (FASN) and ATP citrate lyase (ACLY) expression. Lowered citrate availability was found to be directly associated with diminished proliferation and, remarkably, enhanced gemcitabine response. Moreover, the deregulated citrate‐derived lipogenic pathway correlated with a remarkable decrease in extracellular pH through inhibition of lactate dehydrogenase (LDH) and overall reduced glycolytic metabolism. Modulation of citric acid metabolism in highly chemoresistant pancreatic adenocarcinoma, through molecules such as vitamin C, could be considered as a future clinical option to improve patient response to standard chemotherapy regimens.

Funder

Ministerio de Ciencia y Tecnología

Centre for Industrial Technological Development

Publisher

Wiley

Reference69 articles.

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