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ER-to-Golgi transport machinery promotes the excessive cargo-triggered unfolded protein response in C. elegans.

Created on 09 Sep 2026

Authors

Liying Guan, Tong Zhang, Zhigao Zhan, Yingchun Wang, Xun Huang, Mei Ding

Published in

PLoS genetics. Volume 22. Issue 9. Pages e1012301. Sep 08, 2026. Epub Sep 08, 2026.

Abstract

Disruption of endoplasmic reticulum (ER) homeostasis activates the unfolded protein response (UPR) to restore proteostasis. Although defects in the secretory machinery can induce ER stress, whether specific trafficking components actively couple cargo handling to UPR signaling remains unclear. Here, using Caenorhabditis elegans genetics, imaging, and biochemical assays, we show that neuronal overexpression of the gap junction protein UNC-9 cell-autonomously activates the IRE-1-XBP-1 branch of the ER UPR. Loss of the early secretory pathway proteins ERGI-2 or ERGI-3 suppresses this response and disrupts UNC-9 localization, revealing functions for these proteins that extend beyond cargo trafficking. ERGI-2 and ERGI-3 interact with both UNC-9 and the ER chaperone HSP-4/BiP, suggesting that they couple the handling of excessive UNC-9 to UPR activation. This requirement is cargo-selective: ERGI-2 and ERGI-3 are dispensable for UPR activation induced by overexpression of another innexin, UNC-7, or unrelated proteins. Moreover, activation of the IRE-1-XBP-1 pathway reduces abnormal UNC-9 accumulation in ergi-2 and ergi-3 mutants. Together, our findings identify ER-to-Golgi trafficking proteins as cargo-selective regulators that link secretory-pathway demand to adaptive UPR.

PMID:
42709854
Bibliographic data and abstract were imported from PubMed on 09 Sep 2026.

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