Oncogenic role of the SLC7A13-SLC3A1 cystine transporter in human luminal breast cancer and its cryo-EM structure

Онкогенная роль транспортора цистина SLC7A13–SLC3A1 в человеческом люминальном раке молочной железы и его структура по крио-ЭМ
Wen Wei, Xu Liu, Renhong Yan, Jing Dong, Tianhao Shi, Bing-Biao Lin, Zhijun Geng, Ming-Cheng Liu, Jin‐Tang Dong, Xuetong Liu, Zichi Geng
2025-08-25

SLC7A13 amplification and overexpressionSLC7A13-SLC3A1 cystine transportercryo-EM structure (2.64 Å) dimer-of-heterodimerscystine uptake and glutathione (GSH) biosynthesisluminal (ER-positive) breast cancer
Breast cancer is a prevalent malignancy worldwide. The majority of breast cancers belong to the estrogen receptor (ER)-positive luminal subtype that can be effectively treated with antiestrogen therapies. However, a significant portion of such malignancies become hormone-refractory and incurable. Cancer cells often uptake more cystines to increase glutathione (GSH) biosynthesis and reduce reactive oxygen species (ROS), thereby preventing ROS-induced ferroptosis and leading to therapeutic resistance. However, few molecules of these processes are targetable for cancer therapy. However, few therapeutic targets have been established that target these processes. Here, we report that the gene for SLC7A13, a member of the SLC7A13-SLC3A1 cystine transporter, was amplified and overexpressed in 19.7% and 49.7% of breast cancers, respectively. SLC7A13 amplification and overexpression were associated with worse overall survival and disease-free survival in patients with luminal breast cancer. Functionally, SLC7A13 overexpression promoted, while its silencing attenuated, cell survival or proliferation. Molecularly, SLC7A13 silencing reduced cystine uptake and GSH biosynthesis, leading to increased lipid ROS levels. The cryo-EM structure of the human SLC7A13-SLC3A1 complex was determined at 2.64 Å, revealing a dimer-of-heterodimers architecture similar to that of other SLC3A1-linked transporters. A specific substrate-binding pocket was identified, containing distinct residues, which suggests a regulatory role in the cystine transporter. These findings suggest that the SLC7A13-SLC3A1 cystine transporter is a therapeutic target for treating luminal breast cancer. They also provide the structural insights for therapeutic development targeting the cystine transporter.
1
Cryo-EM structure of human SLC7A13-SLC3A1 complex was solved at 2.64 Å, revealing a dimer-of-heterodimers architecture and a specific substrate-binding pocket with distinct residues, providing structural insights for therapeutic development.
2
SLC7A13 amplification and overexpression correlate with worse overall survival and disease-free survival in luminal (ER-positive) breast cancer patients.
3
SLC7A13 gene is amplified in 19.7% of breast cancers and overexpressed in 49.7% of breast cancers.
4
SLC7A13 overexpression promotes breast cancer cell survival and proliferation, while SLC7A13 silencing attenuates these phenotypes.
5
SLC7A13 silencing reduces cystine uptake and glutathione (GSH) biosynthesis, increasing lipid ROS levels.

Human SLC7A13-SLC3A1 cystine transporter complex

Oncogenic role, functional contribution to cystine uptake, glutathione biosynthesis and ferroptosis resistance in luminal (ER-positive) breast cancer, and its cryo-EM structure (2.64 Å) including substrate-binding pocket and dimer-of-heterodimers architecture

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2025-08-25
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Wen Wei
Xu Liu
Renhong Yan
Jing Dong
Tianhao Shi
Bing-Biao Lin
Zhijun Geng
Ming-Cheng Liu
Jin‐Tang Dong
Xuetong Liu
Zichi Geng
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