Immunohistochemical Analysis of the Metabolic Phenotype of Adrenal Cortical Carcinoma.


Journal

Endocrine pathology
ISSN: 1559-0097
Titre abrégé: Endocr Pathol
Pays: United States
ID NLM: 9009288

Informations de publication

Date de publication:
Sep 2020
Historique:
pubmed: 6 5 2020
medline: 2 6 2021
entrez: 6 5 2020
Statut: ppublish

Résumé

Metabolic reprogramming is a cellular process contributing to carcinogenesis. However, it remains poorly understood in adrenal cortical carcinoma (ACC), an aggressive malignancy with overall poor prognosis and limited therapeutic options. We characterized the metabolic phenotype of ACC, by examining the immunoprofile of key proteins involved in glucose metabolism, hexokinase (HK1), pyruvate kinase (PKM1, PKM2), succinate dehydrogenase (SDHB), and phospho-S6 ribosomal protein (pS6), in a tissue microarray of 137 adrenal cortical tissue samples. Protein expression was compared between ACC (n = 42), adrenal cortical adenoma (ACA; n = 50), and normal adrenal cortical tissue samples (n = 45). Cytoplasmic expression of HK1 and PKM2 was significantly higher in ACC than in ACA (p < 0.001 and p = 0.014, respectively) or normal adrenal cortical tissue samples (p < 0.001 and p < 0.001, respectively). Expression of HK1 and PKM2 was also higher in ACA than in normal adrenal cortical tissue samples (p < 0.001 and p < 0.001, respectively). PKM1 expression was overall low in ACC, ACA, and normal samples, although expression of PKM1 was higher in ACC than in ACA (p = 0.027). There was no loss of cytoplasmic granular SDHB expression in our cohort of adrenal cortical tumors, and cytoplasmic expression of pS6 was lower in ACC than in ACA (p = 0.003) or normal adrenal cortical tissue samples (p = 0.008). Significantly, HK1 expression correlated with pyruvate kinase isoform (PKM2 and PKM1) expression (p < 0.001 and p = 0.007, respectively). Although functional validation was not performed, this study provides further evidence that metabolic reprogramming and altered glucose metabolism may occur in a subset of ACC through overexpression of intracellular glycolytic enzymes, notably HK1 and PKM2. The possibility of utilizing the reprogrammed glucose metabolism in ACC for novel therapeutic strategies should be explored in future studies.

Identifiants

pubmed: 32367334
doi: 10.1007/s12022-020-09624-3
pii: 10.1007/s12022-020-09624-3
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

231-238

Subventions

Organisme : CIHR
ID : FDN-148385
Pays : Canada
Organisme : CIHR
ID : FDN-148385
Pays : Canada

Auteurs

Kai Duan (K)

Department of Pathology, University Health Network, 200 Elizabeth Street, 11th floor, Toronto, ON, M5G 2C4, Canada.
Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, ON, Canada.

Hasan Gucer (H)

Department of Pathology, Recep Tayyip Erdogan University, Rize, Turkey.

Mehmet Kefeli (M)

Department of Pathology, Ondokuz Mayis University, Samsun, Turkey.

Sylvia L Asa (SL)

Department of Pathology, University Health Network, 200 Elizabeth Street, 11th floor, Toronto, ON, M5G 2C4, Canada.
Department of Pathology, University Hospitals Cleveland Medical Center and Case Western Reserve University, Cleveland, OH, USA.

Daniel A Winer (DA)

Department of Pathology, University Health Network, 200 Elizabeth Street, 11th floor, Toronto, ON, M5G 2C4, Canada.
Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, ON, Canada.
Division of Cellular & Molecular Biology, Diabetes Research Group, Toronto General Hospital Research Institute (TGHRI), University Health Network, Toronto, Canada.
Buck Institute for Research on Aging, 8001 Redwood Boulevard, Novato, CA, USA.

Ozgur Mete (O)

Department of Pathology, University Health Network, 200 Elizabeth Street, 11th floor, Toronto, ON, M5G 2C4, Canada. ozgur.mete2@uhn.ca.
Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, ON, Canada. ozgur.mete2@uhn.ca.

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