Adaptation to cystine limitation stress confers a targetable lipid metabolism vulnerability in pancreatic ductal adenocarcinoma
Abstract
Abstract Cystine/cysteine is critical for antioxidant response and sulfur metabolism in cancer cells and is one of the most depleted amino acids in the microenvironment of pancreatic ductal adenocarcinoma (PDAC). The effects of cystine limitation stress (CLS) on PDAC progression are poorly understood. Here we report that adaptation to CLS (CLSA) promotes PDAC cell proliferation and tumor growth through translational upregulation of the oxidative pentose phosphate pathway (OxPPP). OxPPP activates the de novo synthesis of nucleotides and fatty acids to support tumor growth. On the other hand, CLSA-mediated lipidomic reprogramming depends on triacylglycerides synthesis and lipid droplet formation to mitigate lipotoxicity. Through drug screening, we identify lomitapide as an inhibitor of CLSA PDAC tumor growth and a potent sensitizer of chemotherapy. Lomitapide inhibits triacylglycerides synthesis to interfere with CLSA and chemotherapy-induced lipidomic reprogramming. Taken together, we demonstrate that CLSA promotes PDAC tumor growth through metabolic reprogramming and lomitapide could be used to target the dysregulated lipid metabolism in PDAC.
Article Details
Authors (26)
Yunzhan Li
Zekun Li
Department of Chemistry
Qin Li
Dongxiao Sun
Bo Ni
Mingjun Tan
Ashley E. Shay
Min Wang
Chenyang Meng
Guangcong Shen
Boyang Fu
Center for Nanochemistry, Beijing Science and Engineering Center for Nanocarbons, Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering
Yueying Shan
Shiqi Zhang
Rifah Rownak Tanshee
Tianxing Zhou
Yongjie Xie
Kun-Ming Chen
Department of Biotechnology, College of Life Sciences, Northwest A&F University
Bin Qiao
Yunkun Dang
Scot R. Kimball
Guanshi Zhang
Girish H. Rajacharya
Pankaj K. Singh
Xiuchao Wang
Jihui Hao
Shengyu Yang