PHGDH phosphorylation mediated by WNK1 serves as a dual marker of metabolic vulnerability and responsiveness to oxaliplatin treatment

S Shaobo Fang (Department of Radiology, Zhengzhou University People’s Hospital & Henan Provincial People’s Hospital) G Guoguo Jin (China-US (Henan) Hormel Cancer Institute) M Mingyang Yan (China-United States (Henan) Hormel Cancer Institute) Y Yanming Song (China-United States (Henan) Hormel Cancer Institute) S Simin Zhao (State Key Laboratory of High-Efficiency Production of Wheat-Maize Double Cropping, Agronomy College, Henan Agricultural University) C Chengjuan Zhang (Department of Pathology, Affiliated Cancer Hospital of Zhengzhou University & Henan Cancer Hospital) Y Yang Shao (China-United States (Henan) Hormel Cancer Institute) K Kexin Zhao (China-United States (Henan) Hormel Cancer Institute) M Meng Liu Z Zhenwei Wang (Department of Marine and Coastal Sciences, Haskin Shellfish Research Laboratory, Rutgers University) X Xinyang Jia (China-United States (Henan) Hormel Cancer Institute) Q Qinxin Guo (China-United States (Henan) Hormel Cancer Institute) M Manman Guo (China-United States (Henan) Hormel Cancer Institute) M Meiyun Wang Z Zhiping Guo (Henan Key Laboratory of Chronic Disease Management, Fuwai Central China Cardiovascular Hospital) Z Zigang Dong (Department of Pathophysiology, School of Basic Medical Sciences, Zhengzhou University)

Abstract

Metabolic reprogramming is a fundamental hallmark of cancer progression. However, the oncogenic mechanisms underlying serine metabolism and its impact on chemotherapeutic sensitivity in gastric cancer (GC) remain poorly defined. Here, through integrated metabolomics and 13 C-labeled metabolic flux analysis, we identify marked dysregulation of serine metabolism in GC, primarily driven by increased expression of phosphoglycerate dehydrogenase (PHGDH). Mechanistically, we show that with no lysine kinase 1 (WNK1) phosphorylates PHGDH at Ser349 and Ser371, enhancing its enzymatic activity and protein stability by preventing ubiquitin-mediated degradation. In vivo, WNK1 knockout mice exhibit significantly reduced gastric tumor burden, accompanied by decreased serine levels and disrupted redox balance, supporting the protumorigenic role of the WNK1–PHGDH axis. Clinically, enhanced PHGDH activity, elevated serine levels, and increased glutathione abundance are strongly associated with poor oxaliplatin response in GC patient cohorts, suggesting PHGDH as a potential predictive biomarker for chemotherapy resistance. Together, these findings delineate a WNK1–PHGDH–driven serine metabolic reprogramming axis that promotes redox adaptation and chemoresistance in GC, highlighting its dual value as a mechanistic driver and a therapeutic vulnerability in cancer treatment.

Article Details

Volume / Issue Vol. 123, Issue 13
Published March 31, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (16)

S

Shaobo Fang

Department of Radiology, Zhengzhou University People’s Hospital & Henan Provincial People’s Hospital

G

Guoguo Jin

China-US (Henan) Hormel Cancer Institute

M

Mingyang Yan

China-United States (Henan) Hormel Cancer Institute

Y

Yanming Song

China-United States (Henan) Hormel Cancer Institute

S

Simin Zhao

State Key Laboratory of High-Efficiency Production of Wheat-Maize Double Cropping, Agronomy College, Henan Agricultural University

C

Chengjuan Zhang

Department of Pathology, Affiliated Cancer Hospital of Zhengzhou University & Henan Cancer Hospital

Y

Yang Shao

China-United States (Henan) Hormel Cancer Institute

K

Kexin Zhao

China-United States (Henan) Hormel Cancer Institute

M

Meng Liu

Z

Zhenwei Wang

Department of Marine and Coastal Sciences, Haskin Shellfish Research Laboratory, Rutgers University

X

Xinyang Jia

China-United States (Henan) Hormel Cancer Institute

Q

Qinxin Guo

China-United States (Henan) Hormel Cancer Institute

M

Manman Guo

China-United States (Henan) Hormel Cancer Institute

M

Meiyun Wang

Z

Zhiping Guo

Henan Key Laboratory of Chronic Disease Management, Fuwai Central China Cardiovascular Hospital

Z

Zigang Dong

Department of Pathophysiology, School of Basic Medical Sciences, Zhengzhou University