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March 1, 2026Journal of Clinical Investigation1 citationsOpen Access

Disruption of CSF-1 receptor-mediated metal ion homeostasis in the murine brain promotes neurodegenerative disease

VCVioleta ChiţuJAJulia AlvarengaWCWenna Chen

Key Points

  • To identify the primary microglial deficit in CSF-1R related leukoencephalopathy and its effects on brain health.
  • Utilized single-nucleus RNA sequencing on brains from young Csf1r+/- mice.
  • Examined metal ion accumulation in brain macrophages and its impact on oligodendrocytes and neuronal cells.
  • Assessed the effects of metallothionein 1 and 3 gene expression on metal ion homeostasis.
  • Observed metal ion accumulation in brain macrophages due to reduced CSF-1R signaling.
  • Noted decreased expression of metallothioneins Mt1 and Mt3 in glial and neuronal cells of Csf1r+/- mice.
  • Showed that overexpression of Mt1 restored metal ion balance and prevented behavioral deficits, while Mt3 deletion worsened the disease.

Abstract

Dominant-inactivating mutations in the colony stimulating factor-1 receptor (CSF1R) cause CSF-1R related leukoencephalopathy (CRL), an adult-onset neurodegenerative disease that is modeled in the Csf1r+/- mouse. CRL is caused by microglial dysfunction. However, the primary microglial deficit, is unknown. To address this question, we employed single-nucleus RNA sequencing of brains from young Csf1r+/- mice without pathological or behavioral alterations. Reduction of CSF-1R signaling caused metal ion accumulation in brain macrophages, with concomitant activation of cell death and stress response pathways in oligodendrocytes and neuronal subpopulations. Reduction of metallothionein 1 (Mt1) and 3 (Mt3) gene expression was a common feature in glial and neuronal cells of Csf1r+/- mice. Overexpression of Mt1 restored metal ion homeostasis, normalized ROS production in microglia, and prevented the development of behavioral deficits, while Mt3 deletion had disease-enhancing effects. These findings demonstrate CSF-1R regulation of metal ion homeostasis via metallothioneins in the brain.

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Cite This Study

Chiţu et al. (2026) studied this question.

synapsesocial.com/papers/69a3d6eaec16d51705d2da59https://doi.org/10.1172/jci200121
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Also Consider

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