Elevated sphingosine-1-phosphate lyase leads to increased metabolism and reduced survival in adrenocortical carcinoma

Author:

Williams Jack L1ORCID,Smith Chris1,Hall Charlotte1,Khaled Zakaa1,Maharaj Avinaash1,Kwong Ruth1,Pittaway James1,Casas Josefina2,Parvanta Laila3,Abdel-Aziz Tarek Ezzat4,Palazzo Fausto5,Chung Teng-Teng4,Guasti Leonardo1,Metherell Lou1ORCID,Prasad Rathi1ORCID

Affiliation:

1. Centre for Endocrinology, Charterhouse Square, Queen Mary University of London , London EC1M 6BQ , United Kingdom

2. Research Unit on BioActive Molecules (RUBAM), Department of Biological Chemistry IQAC-CSIC, Barcelona and Liver and Digestive Diseases Networking Biomedical Research Centre (CIBEREHD). ISCIII. Madrid , Spain

3. Department of Surgery, St Bartholomew’s Hospital, West Smithfield , London EC1A 7BE , United Kingdom

4. Department of Endocrinology, University College London Hospitals NHS Foundation Trust , NW1 2PG London , United Kingdom

5. Department of Endocrine and Thyroid Surgery, Hammersmith Hospital, Imperial College London , W12 0HS London , United Kingdom

Abstract

Abstract Objective Adrenocortical carcinomas (ACCs) are invasive tumours arising in the adrenal cortex, and steroidogenic tumours are associated with worse prognostic outcomes. Loss-of-function mutations in sphingosine-1-phosphate lyase (SGPL1) cause primary adrenal insufficiency and as a key degradative enzyme in the sphingolipid pathway, SGPL1 also influences the balance of pro-proliferative and pro-apoptotic sphingolipids. We, therefore, hypothesized increased SGPL1 may be linked to increased disease severity in ACC. Design Analyse SGPL1 expression impact on patient survival and adrenal cancer cell phenotype. We analysed two ACC cohorts with survival and corresponding transcriptomic data, focusing on SGPL1 and sphingolipid pathway genes. In vitro, we generated SGPL1-knockout and overexpressing H295R adrenocortical cells to investigate the role of SGPL1 in cell signalling in ACCs. Results We found increased expression of several sphingolipid pathway receptors and enzymes, most notably SGPL1 correlated with reduced patient survival in both cohorts. Overexpression of SGPL1 in the H295R cell line increased proliferation and migration while reducing apoptosis, while SGPL1 knockout had the opposite effect. RNA-seq revealed a global increase in the expression of genes in the electron transport chain in overexpressing cells, correlating with increased aerobic respiration and glycolysis. Furthermore, the opposite phenotype was seen in cells lacking SGPL1. We subsequently found the increased proliferation is linked to metabolic substrate availability and increased capacity to use different fuel sources, but particularly glucose, in overexpressing cells. Conclusions We, therefore, propose that SGPL1-overexpressing ACC tumours reduce patient survival by increasing fuel usage for anabolism and energy production to facilitate growth and invasion.

Funder

Barts Charity

Medical Research Council

MRC

UK Clinical Academic Research Partner

Publisher

Oxford University Press (OUP)

Subject

Endocrinology,General Medicine,Endocrinology, Diabetes and Metabolism

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