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January 2, 2024SHILAP Revista de lepidopterología110 citationsOpen Access

A conserved ion channel function of STING mediates noncanonical autophagy and cell death

JXJinrui XunZZZhichao ZhangBLBo Lv

Key Points

  • This research aims to elucidate how STING activates V-ATPase for noncanonical autophagy and induces cell death.
  • Investigated STING's ion channel function in inducing proton efflux and vesicle deacidification
  • Utilized chemical ligand C53 to block STING channel activity and observed effects
  • Examined the impact of STING activation on LC3 lipidation and cell death processes.
  • STING activation induces proton flux through an electron-sparse pore, facilitating vesicle deacidification
  • C53 ligand fully inhibits STING trafficking from the ER to the Golgi, affecting proton flux
  • C53 selectively inhibits STING-dependent processes post-Golgi, impacting LC3 lipidation and cell death.

Abstract

The cGAS/STING pathway triggers inflammation upon diverse cellular stresses such as infection, cellular damage, aging, and diseases. STING also triggers noncanonical autophagy, involving LC3 lipidation on STING vesicles through the V-ATPase-ATG16L1 axis, as well as induces cell death. Although the proton pump V-ATPase senses organelle deacidification in other contexts, it is unclear how STING activates V-ATPase for noncanonical autophagy. Here we report a conserved channel function of STING in proton efflux and vesicle deacidification. STING activation induces an electron-sparse pore in its transmembrane domain, which mediates proton flux in vitro and the deacidification of post-Golgi STING vesicles in cells. A chemical ligand of STING, C53, which binds to and blocks its channel, strongly inhibits STING-mediated proton flux in vitro. C53 fully blocks STING trafficking from the ER to the Golgi, but adding C53 after STING arrives at the Golgi allows for selective inhibition of STING-dependent vesicle deacidification, LC3 lipidation, and cell death, without affecting trafficking. The discovery of STING as a channel opens new opportunities for selective targeting of canonical and noncanonical STING functions.

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Cite This Study

Xun et al. (2024) studied this question.

synapsesocial.com/papers/69ece4fdd163bb0e20072453https://doi.org/10.1038/s44319-023-00045-x
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