Microglia ferroptosis is regulated by SEC24B and contributes to neurodegeneration

Sean K. Ryan(Sanofi (United States)), Matija Zelic(Sanofi (United States)), Yingnan Han(Sanofi (United States)), Erin Teeple(Sanofi (United States)), Luoman Chen(Sanofi (United States)), Mahdiar Sadeghi(Sanofi (United States)), Srinivas Shankara(Sanofi (United States)), Lilu Guo(Sanofi (United States)), Cong Li(Sanofi (United States)), Fabrizio Pontarelli(Sanofi (United States)), Elizabeth H. Jensen(Sanofi (United States)), Ashley L. Comer(Sanofi (United States)), Dinesh Kumar(Sanofi (United States)), Mindy Zhang(Sanofi (United States)), Joseph Gans(Sanofi (United States)), Bailin Zhang(Sanofi (United States)), Jonathan D. Proto(Sanofi (United States)), Jacqueline Saleh(Sanofi (United States)), James C. Dodge(Sanofi (United States)), Virginia Savova(Sanofi (United States)), Deepak K. Rajpal(Sanofi (United States)), Dimitry Ofengeim(Sanofi (United States)), Timothy R. Hammond(Sanofi (France))
Nature Neuroscience
December 19, 2022
Cited by 334Open Access
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Abstract

Iron dysregulation has been implicated in multiple neurodegenerative diseases, including Parkinson's disease (PD). Iron-loaded microglia are frequently found in affected brain regions, but how iron accumulation influences microglia physiology and contributes to neurodegeneration is poorly understood. Here we show that human induced pluripotent stem cell-derived microglia grown in a tri-culture system are highly responsive to iron and susceptible to ferroptosis, an iron-dependent form of cell death. Furthermore, iron overload causes a marked shift in the microglial transcriptional state that overlaps with a transcriptomic signature found in PD postmortem brain microglia. Our data also show that this microglial response contributes to neurodegeneration, as removal of microglia from the tri-culture system substantially delayed iron-induced neurotoxicity. To elucidate the mechanisms regulating iron response in microglia, we performed a genome-wide CRISPR screen and identified novel regulators of ferroptosis, including the vesicle trafficking gene SEC24B. These data suggest a critical role for microglia iron overload and ferroptosis in neurodegeneration.


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