A druggable cascade links methionine metabolism to epigenomic reprogramming in squamous cell carcinoma

Author:

Nam Chehyun1ORCID,Li Li-Yan23,Yang Qian3,Ziman Benjamin1,Zhao Hua1ORCID,Hu Boyan1,Collet Casey1,Jing Pei2,Lei Qifang4,Xu Li-Yan2ORCID,Li En-Min2ORCID,Koeffler H. Phillip3,Sinha Uttam K.5,Lin De-Chen13

Affiliation:

1. Center for Craniofacial Molecular Biology, Herman Ostrow School of Dentistry, Norris Comprehensive Cancer Center, University of Southern California, Los Angeles, CA 90033

2. The Key Laboratory of Molecular Biology for High Cancer Incidence Coastal Chaoshan Area, Department of Biochemistry and Molecular Biology, Shantou University Medical College, Shantou 515041, Guangdong, China

3. Department of Medicine, Cedars-Sinai Medical Center, Los Angeles, CA 90048

4. Department of Urology, South China Hospital of Shenzhen University, Shenzhen, Guangdong 518116, China

5. Department of Otolaryngology, Keck School of Medicine, University of Southern California, Los Angeles, CA 90033

Abstract

Upper aerodigestive squamous cell carcinoma (UASCC) is a common and aggressive malignancy with few effective therapeutic options. Here, we investigate amino acid metabolism in this cancer, surprisingly noting that UASCC exhibits the highest methionine level across all human cancers, driven by its transporter LAT1. We show that LAT1 is also expressed at the highest level in UASCC, transcriptionally activated by UASCC-specific promoter and enhancers, which are directly coregulated by SCC master regulators TP63/KLF5/SREBF1. Unexpectedly, unbiased bioinformatic screen identifies EZH2 as the most significant target downstream of the LAT1-methionine pathway, directly linking methionine metabolism to epigenomic reprogramming. Importantly, this cascade is indispensable for the survival and proliferation of UASCC patient-derived tumor organoids. In addition, LAT1 expression is closely associated with cellular sensitivity to inhibition of the LAT1-methionine-EZH2 axis. Notably, this unique LAT1-methionine-EZH2 cascade can be targeted effectively by either pharmacological approaches or dietary intervention in vivo. In summary, this work maps a unique mechanistic cross talk between epigenomic reprogramming with methionine metabolism, establishes its biological significance in the biology of UASCC, and identifies a unique tumor-specific vulnerability which can be exploited both pharmacologically and dietarily.

Funder

NIH/NCI

Ming Hsieh Institute for Research of Engineering-Medicine for Cancer

Wright Foundation Transformative Cancer Grant Program

Watt Family Endowed Chair for Head and Neck Cancer Research

Li Ka Shing Foundation

Publisher

Proceedings of the National Academy of Sciences

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