The lactate sensor NDRG3 decelerates ER-to-Golgi transport through interaction with the long isoform of syntaxin-5.

Ferle, Pia E; Krause, Niklas; Koliwer, Judith; Völker, Jörn Michael; Becker, Fabia; Hillebrand, Alexander; Schröder, Leonie F; Jäger, Stefanie et al. · Proc Natl Acad Sci U S A · 2025

basic_science · Level V

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Abstract

<i>BET1, GOSR2,</i> and <i>STX5</i> variants can cause fatal inherited diseases, including epilepsies, muscular dystrophy, and multisystemic disorders. Together with Sec22b, they form a SNARE complex that mediates fusion of ER-derived vesicles with the ER-Golgi-intermediate compartment and the <i>cis</i>-Golgi. The Sec1/Munc18 protein SCFD1/Sly1 accelerates ER-to-Golgi SNARE complex assembly and membrane fusion, but much less is known about downregulation of ER-to-Golgi trafficking under cellular stress conditions. Here, we identify the lactate and hypoxia sensor protein NDRG3 as a binding partner of the ER-to-Golgi SNARE complex. NDRG3 binds via its C-terminal domain to the N-terminal domain of the long isoform of Stx5, thereby impairing ER-to-Golgi trafficking under hypoxic conditions and elevated intracellular lactate levels. In NDRG3-deficient cells, hypoxia- and lactate-induced inhibition of ER-to-Golgi trafficking is abolished. Our work identifies NDRG3 as a negative regulator of ER-to-Golgi SNARE complex function, mechanistically linking hypoxia and lactate to membrane trafficking in the secretory pathway.

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