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January 22, 2026Cells0 citationsOpen Access

Zinc Permeation Through Acid-Sensing Ion Channels

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XCXiang-Ping ChuKIKōichi InoueZXZhi-Gang Xiong

Key Points

  • This research aims to clarify the role of ASIC2a channels in zinc influx and its implications for neuronal injury.
  • Cultured mouse cortical neurons were used to assess ASIC currents under acidic conditions.
  • Chinese Hamster Ovary cells were transfected with various ASIC subunits to study current responses.
  • Fluorescence imaging analyzed zinc influx in cells expressing different ASIC subunits.
  • Extracellular zinc enhanced ASIC currents in neurons under acidic conditions.
  • Zinc influx occurred only in cells expressing ASIC2a when exposed to acidic ECF.
  • Acid-mediated neurotoxicity increased with zinc presence in ASIC2a-containing channels.

Abstract

Acid-sensing ion channels (ASICs), activated under acidic conditions, play a critical role in ischemic brain injury, but the detailed mechanisms and signaling pathways remain unclear. Our previous studies have shown that activation of ASIC1a channels contributes to acidosis-induced neuronal injury, partially mediated by increased calcium influx. In this study, we provide evidence that activation of ASIC2a-containing channels induces zinc influx. In cultured mouse cortical neurons, ASIC currents that were insensitive to PcTx1 inhibition were potentiated by extracellular zinc. In Chinese Hamster Ovary cells transfected with different ASIC subunits, large inward currents were recorded upon a pH drop from 7.4 to 5.0 in cells expressing homomeric ASIC1a, ASIC2a, or heteromeric ASIC1a/2a channels when normal Na+-rich extracellular fluid (ECF) was used. However, when ECF was modified to one containing zinc as the primary cation, the same pH drop induced an inward current only in cells expressing homomeric ASIC2a or heteromeric ASIC1a/2a, but not homomeric ASIC1a. Fluorescence imaging revealed rapid zinc influx in cells expressing ASIC2a but not ASIC1a when zinc was applied with the acidic ECF. Additionally, at pH values where ASIC2a-containing channels were activated, acid-mediated neurotoxicity was exacerbated by zinc. Thus, ASIC2a-containing channels may represent a novel pathway for zinc entry and activation of these channels might contribute to zinc-mediated neurotoxicity.

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Cite This Study

Chu et al. (2026) studied this question.

synapsesocial.com/papers/6971bea8642b1836717e3461https://doi.org/10.3390/cells15020186
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