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February 14, 2026Autophagy0 citationsOpen Access

Mitophagy bridges glucose metabolism, inflammation and neuroprotection in astrocytes

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HHHanna Falk HåkanssonJHJack H. HowdenJKJosef T. Kittler

Key Points

  • This research aims to elucidate the role of PINK1-dependent mitophagy in astrocytes and its interactions with glucose metabolism and inflammation.
  • Characterized PINK1-dependent mitophagy in astrocytes and compared it with neuronal cells
  • Investigated the role of hexokinase 2 (HK2) in regulating this process during mitochondrial damage
  • Assessed the neuroprotective effects of HK2-PINK1 mitophagy in astrocytes when exposed to inflammatory cytokines.
  • PINK1-mitophagy occurs more rapidly and with fewer spatial limitations in astrocytes compared to neurons
  • HK2 forms a glucose-dependent complex with PINK1, facilitating mitophagy in response to mitochondrial damage
  • HK2-PINK1 mitophagy activation in astrocytes reduces cytokine-induced neuronal death.

Abstract

Mitochondria regulate ATP production, calcium buffering, and apoptotic signaling, and clearing dysfunctional mitochondria by mitophagy is essential for cellular homeostasis. While PINK1-dependent mitophagy is well-characterized in neurons, its function in glial cells such as astrocytes is less understood. Our study demonstrates that PINK1-mitophagy in astrocytes occurs faster and with less spatial restriction compared to neurons. This pathway was specifically regulated in astrocytes by the glycolytic enzyme, HK2 (hexokinase 2), which forms a glucose-dependent complex with PINK1 following mitochondrial damage. Inflammation also induces HK2-PINK1 mitophagy, and its activation in astrocytes protects against cytokine-induced neuronal death. Our findings characterize a novel HK2-PINK1 pathway in astrocytes that bridges mitophagy, metabolism, and immune signaling.Abbreviation: HK2: hexokinase 2; PD: Parkinson disease; PINK1: PTEN induced kinase 1; S65: serine 65.

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Cite This Study

Håkansson et al. (2026) studied this question.

synapsesocial.com/papers/699011812ccff479cfe58345https://doi.org/10.1080/15548627.2026.2623987
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