MYC Rules: Leading Glutamine Metabolism toward a Distinct Cancer Cell Phenotype

Author:

Tambay VincentORCID,Raymond Valérie-Ann,Bilodeau MarcORCID

Abstract

Metabolic reprogramming and deregulated cellular energetics are hallmarks of cancer. The aberrant metabolism of cancer cells is thought to be the product of differential oncogene activation and tumor suppressor gene inactivation. MYC is one of the most important oncogenic drivers, its activation being reported in a variety of cancer types and sub-types, among which are the most prevalent and aggressive of all malignancies. This review aims to offer a comprehensive overview and highlight the importance of the c-Myc transcription factor on the regulation of metabolic pathways, in particular that of glutamine and glutaminolysis. Glutamine can be extensively metabolized into a variety of substrates and be integrated in a complex metabolic network inside the cell, from energy metabolism to nucleotide and non-essential amino acid synthesis. Together, understanding metabolic reprogramming and its underlying genetic makeup, such as MYC activation, allows for a better understanding of the cancer cell phenotype and thus of the potential vulnerabilities of cancers from a metabolic standpoint.

Funder

Chaire de recherche en hépatologie Novartis - Fondation canadienne du foie de l'Université de Montréal

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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2. MYC and KRAS cooperation: from historical challenges to therapeutic opportunities in cancer;Signal Transduction and Targeted Therapy;2024-08-21

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4. Reprogramming of Glutamine Amino Acid Transporters Expression and Prognostic Significance in Hepatocellular Carcinoma;International Journal of Molecular Sciences;2024-07-10

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