Redox integration of signaling and metabolism in a head and neck cancer model of radiation resistance using COSMRO

使用 COSMRO 对抗放射的头颈癌模型中的信号和代谢进行氧化还原整合

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作者:Zhiwei Ji, Jade Moore, Nelmi O Devarie-Baez, Joshua Lewis, Hanzhi Wu, Kirtikar Shukla, Elsa I Silva Lopez, Victor Vitvitsky, Chia-Chi Chuang Key, Mercedes Porosnicu, Melissa L Kemp, Ruma Banerjee, John S Parks, Allen W Tsang, Xiaobo Zhou, Cristina M Furdui

Abstract

Redox metabolism is increasingly investigated in cancer as driving regulator of tumor progression, response to therapies and long-term patients' quality of life. Well-established cancer therapies, such as radiotherapy, either directly impact redox metabolism or have redox-dependent mechanisms of action defining their clinical efficacy. However, the ability to integrate redox information across signaling and metabolic networks to facilitate discovery and broader investigation of redox-regulated pathways in cancer remains a key unmet need limiting the advancement of new cancer therapies. To overcome this challenge, we developed a new constraint-based computational method (COSMro) and applied it to a Head and Neck Squamous Cell Cancer (HNSCC) model of radiation resistance. This novel integrative approach identified enhanced capacity for H2S production in radiation resistant cells and extracted a key relationship between intracellular redox state and cholesterol metabolism; experimental validation of this relationship highlights the importance of redox state in cellular metabolism and response to radiation.

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