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ARID5A RNA-binding coordinates microglial defense and ferroptosis in iPSC-derived models

Aug 2026 · Nature Communications · Vol 17 · 0 citations · 103 references
Medicine

TL;DR

It is shown that ARID5A regulates RNA processing in microglia, linking immune and lysosomal pathways to iron-driven death in neurodegeneration and highlighting the importance of protein-RNA interactions in regulating microglial cell biology.

Abstract

RNA-binding proteins (RBPs) are key regulators of gene expression that shape cellular function in health and disease. However, the roles of RBPs in immune cells within the central nervous system (CNS) remain poorly understood. Here, we identify ARID5A as an RBP highly expressed in microglia and uncover its RNA-mediated regulatory functions using integrated multi-omics analyses of its RNA, DNA, and protein interactions. ARID5A regulates the splicing and translation of its RNA targets, many of which are integral to lysosomal, immune, and iron metabolism pathways. We confirm the functional relevance of this ARID5A-dependent RNA regulatory network by demonstrating that ARID5A modulates lysosomal activity, cytokine secretion, iron accumulation, and ferroptosis in iPSC-derived microglia. We further demonstrate that knockdown of microglial ARID5A reduces neuronal ferroptosis in co-cultures, underscoring the interconnected nature of these pathways. Moreover, in microglia harboring the TREM2-T66M mutation, ARID5A depletion restores dysregulated lysosomal and metabolic functions. Our results highlight the importance of protein-RNA interactions in regulating microglial cell biology. RNA-binding proteins shape gene expression, but their roles in brain immune cells are unclear. Here, the authors show that ARID5A regulates RNA processing in microglia, linking immune and lysosomal pathways to iron-driven death in neurodegeneration.

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