Characterization of a patient-derived variant of GPX4 for precision therapy

被引:66
作者
Liu, Hengrui [1 ]
Forouhar, Farhad [2 ]
Seibt, Tobias [3 ]
Saneto, Russell [4 ,5 ,6 ]
Wigby, Kristen [7 ,8 ]
Friedman, Jennifer [7 ,8 ,9 ,10 ]
Xia, Xin [11 ]
Shchepinov, Mikhail S. [12 ]
Ramesh, Sanath Kumar [13 ]
Conrad, Marcus [14 ,15 ]
Stockwell, Brent R. [1 ,2 ,11 ,16 ]
机构
[1] Columbia Univ, Dept Chem, New York, NY 10027 USA
[2] Columbia Univ, Herbert Irving Comprehens Canc Ctr, New York, NY 10027 USA
[3] Klinikum Univ Munchen, Med Klin & Poliklin 4, Dept Nephrol, Munich, Germany
[4] Klinikum Univ Munchen, Med Klin & Poliklin 4, Inst Metab & Cell Death, Munich, Germany
[5] Univ Washington, Dept Neurol, Div Pediat Neurol, Seattle, WA 98195 USA
[6] Seattle Childrens Hosp, Ctr Integrat Brain Res, Seattle, WA USA
[7] Univ Calif San Diego, Dept Pediat, San Diego, CA 92103 USA
[8] Rady Childrens Hosp San Diego, Rady Childrens Inst Genom Med, San Diego, CA USA
[9] Univ Calif San Diego, Dept Neurosci, La Jolla, CA 92093 USA
[10] Rady Childrens Hosp, Div Child Neurol, San Diego, CA USA
[11] Columbia Univ, Dept Biol Sci, New York, NY 10027 USA
[12] Retrotope Inc, Los Altos, CA USA
[13] CureGPX4 Org, Seattle, WA USA
[14] Helmholtz Zentrum Munchen, Inst Metab & Cell Death, Neuherberg, Germany
[15] Pirogov Russian Natl Res Med Univ, Lab Expt Oncol, Moscow, Russia
[16] Columbia Univ, Irving Inst Canc Dynam, New York, NY 10027 USA
基金
欧洲研究理事会;
关键词
CELL-DEATH; SELENIUM SUPPLEMENTATION; OXIDATIVE DAMAGE; CANCER-CELLS; GLUTATHIONE; EXPRESSION; MUTANT; DEPENDENCY; PROTECTS;
D O I
10.1038/s41589-021-00915-2
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Glutathione peroxidase 4 (GPX4), as the only enzyme in mammals capable of reducing esterified phospholipid hydroperoxides within a cellular context, protects cells from ferroptosis. We identified a homozygous point mutation in the GPX4 gene, resulting in an R152H coding mutation, in three patients with Sedaghatian-type spondylometaphyseal dysplasia. Using structure-based analyses and cell models, including patient fibroblasts, of this variant, we found that the missense variant destabilized a critical loop, which disrupted the active site and caused a substantial loss of enzymatic function. We also found that the R152H variant of GPX4 is less susceptible to degradation, revealing the degradation mechanism of the GPX4 protein. Proof-of-concept therapeutic treatments, which overcome the impaired R152H GPX4 activity, including selenium supplementation, selective antioxidants and a deuterated polyunsaturated fatty acid were identified. In addition to revealing a general approach to investigating rare genetic diseases, we demonstrate the biochemical foundations of therapeutic strategies targeting GPX4.
引用
收藏
页码:91 / +
页数:27
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