A pan-cancer study of the transcriptional regulation of uricogenesis in human tumours: pathological and pharmacological correlates

Author:

Saidak Zuzana12,Louandre Christophe13,Dahmani Samy3,Sauzay Chloé13,Guedda Sara3,Chauffert Bruno14,Chatelain Denis15,Ceballos-Picot Irene6,Galmiche Antoine13

Affiliation:

1. Equipe CHIMERE, Université de Picardie Jules Verne, Amiens, France

2. Laboratoire d’Oncobiologie Moléculaire, Centre de Biologie Humaine, CHU Sud, Amiens, France

3. Laboratoire de Biochimie, Centre de Biologie Humaine, CHU Sud, Amiens, France

4. Service d’Oncologie Médicale, CHU Sud, Amiens, France

5. Service d’Anatomopathologie, CHU Nord, Amiens, France

6. Laboratoire de Biochimie métabolomique et protéomique, Hôpital Necker, Assistance Publique Hôpitaux de Paris, Paris, France

Abstract

Uric acid (UA) is the end product of the catabolism of purines, and its serum levels are commonly increased in cancer patients. We aimed to explore the transcriptional regulation of tumour uricogenesis in human tumours, and relate uricogenesis with tumour pathological and pharmacological findings. Using data from The Cancer Genome Atlas (TCGA), we analysed the expression levels of xanthine dehydrogenase (XDH) and adenine phosphoribosyltransferase (APRT), two key enzymes in UA production and the purine salvage pathway, respectively. We found large differences between tumour types and individual tumours in their expression of XDH and APRT. Variations in locus-specific DNA methylation and gene copy number correlated with the expression levels of XDH and APRT in human tumours respectively. We explored the consequences of this differential regulation of uricogenesis. Tumours with high levels of XDH mRNA were characterised by higher expression of several genes encoding pro-inflammatory and immune cytokines, and increased levels of tumour infiltration with immune cells. Finally, we studied cancer drug sensitivity using data from the National Cancer Institute-60 (NCI-60) database. A specific correlation was found between the expression levels of APRT and cell sensitivity to the chemotherapeutic agent 5-fluorouracil (5-FU). Our findings underline the existence of great differences in uricogenesis between different types of human tumours. The study of uricogenesis offers promising perspectives for the identification of clinically relevant molecular biomarkers and for tumour stratification in the therapeutic context.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry,Biophysics

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