Developmental role of PHD2 in the pathogenesis of pseudohypoxic pheochromocytoma

Author:

Eckardt Luise12,Prange-Barczynska Maria13,Hodson Emma J45,Fielding James W13,Cheng Xiaotong13,Lima Joanna D C C1,Kurlekar Samvid1,Douglas Gillian6,Ratcliffe Peter J134,Bishop Tammie1ORCID

Affiliation:

1. 1Target Discovery Institute, University of Oxford, Oxford, UK

2. 2Institute of Physiology and Pathophysiology, University of Heidelberg, Heidelberg, Germany

3. 3Ludwig Institute for Cancer Research, University of Oxford, Oxford, UK

4. 4The Francis Crick Institute, London, UK

5. 5The Department of Experimental Medicine and Immunotherapeutics, University of Cambridge, Cambridge, UK

6. 6BHF Centre of Research Excellence, Division of Cardiovascular Medicine, Radcliffe Department of Medicine, John Radcliffe Hospital, University of Oxford, Oxford, UK

Abstract

Despite a general role for the HIF hydroxylase system in cellular oxygen sensing and tumour hypoxia, cancer-associated mutations of genes in this pathway, including PHD2, PHD1, EPAS1 (encoding HIF-2α) are highly tissue-restricted, being observed in pseudohypoxic pheochromocytoma and paraganglioma (PPGL) but rarely, if ever, in other tumours. In an effort to understand that paradox and gain insights into the pathogenesis of pseudohypoxic PPGL, we constructed mice in which the principal HIF prolyl hydroxylase, Phd2, is inactivated in the adrenal medulla using TH-restricted Cre recombinase. Investigation of these animals revealed a gene expression pattern closely mimicking that of pseudohypoxic PPGL. Spatially resolved analyses demonstrated a binary distribution of two contrasting patterns of gene expression among adrenal medullary cells. Phd2 inactivation resulted in a marked shift in this distribution towards a Pnmt/Hif-2α+/Rgs5+ population. This was associated with morphological abnormalities of adrenal development, including ectopic TH+ cells within the adrenal cortex and external to the adrenal gland. These changes were ablated by combined inactivation of Phd2 with Hif-2α, but not Hif-1α. However, they could not be reproduced by inactivation of Phd2 in adult life, suggesting that they arise from dysregulation of this pathway during adrenal development. Together with the clinical observation that pseudohypoxic PPGL manifests remarkably high heritability, our findings suggest that this type of tumour likely arises from dysregulation of a tissue-restricted action of the PHD2/HIF-2α pathway affecting adrenal development in early life and provides a model for the study of the relevant processes.

Publisher

Bioscientifica

Subject

Cancer Research,Endocrinology,Oncology,Endocrinology, Diabetes and Metabolism

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