Neutral amino acid transporter SLC38A2 protects renal medulla from hyperosmolarity-induced ferroptosis

Author:

Du Chunxiu1234ORCID,Xu Hu1ORCID,Cao Cong1,Cao Jiahui1,Zhang Yufei1ORCID,Zhang Cong1,Qiao Rongfang1,Ming Wenhua1,Li Yaqing1,Ren Huiwen1ORCID,Cui Xiaohui1,Luan Zhilin1,Guan Youfei123ORCID,Zhang Xiaoyan4ORCID

Affiliation:

1. Advanced Institute for Medical Sciences, Dalian Medical University

2. Department of Physiology and Pathophysiology, School of Basic Medical Sciences, Dalian Medical University

3. Dalian Key Laboratory for Nuclear Receptors in Major Metabolic Diseases

4. Health Science Center, East China Normal University

Abstract

Hyperosmolarity of the renal medulla is essential for urine concentration and water homeostasis. However, how renal medullary collecting duct (MCD) cells survive and function under harsh hyperosmotic stress remains unclear. Using RNA-Seq, we identified SLC38A2 as a novel osmoresponsive neutral amino acid transporter in MCD cells. Hyperosmotic stress-induced cell death in MCD cells occurred mainly via ferroptosis, and it was significantly attenuated by SLC38A2 overexpression but worsened by Slc38a2-gene deletion or silencing. Mechanistic studies revealed that the osmoprotective effect of SLC38A2 is dependent on the activation of mTORC1. Moreover, an in vivo study demonstrated that Slc38a2-knockout mice exhibited significantly increased medullary ferroptosis following water restriction. Collectively, these findings reveal that Slc38a2 is an important osmoresponsive gene in the renal medulla and provide novel insights into the critical role of SLC38A2 in protecting MCD cells from hyperosmolarity-induced ferroptosis via the mTORC1 signalling pathway.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

East China Normal University

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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