Some aquaporins (AQPs) can transport HO across membranes, allowing redox signals to proceed in and between cells. Unlike other peroxiporins, human AQP11 is an endoplasmic reticulum (ER)-resident that can conduit HO to the cytosol. Here, we show that silencing Ero1α, an ER flavoenzyme that generates abundant HO during oxidative folding, causes a paradoxical increase in luminal HO levels. The simultaneous AQP11 downregulation prevents this increase, implying that HO reaches the ER from an external source(s). Pharmacological inhibition of the electron transport chain reveals that Ero1α downregulation activates superoxide production by complex III. In the intermembrane space, superoxide dismutase 1 generates HO that enters the ER channeled by AQP11. Meanwhile, the number of ER-mitochondria contact sites increases as well, irrespective of AQP11 expression. Taken together, our findings identify a novel interorganellar redox response that is activated upon Ero1α downregulation and transfers HO from mitochondria to the ER via AQP11.
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http://dx.doi.org/10.1016/j.redox.2022.102410 | DOI Listing |
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Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, IN, United States 46202.
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The Rosalind Franklin Institute, Harwell Science & Innovation Campus, Harwell OX11 0FA, U.K.
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Department of Integrative Food, Bioscience and Biotechnology, Chonnam National University, Gwangju, Republic of Korea.
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Department of Physiology, China Medical University, Taichung, 404328, Taiwan.
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Medical Research Council Prion Unit, University College London Institute of Prion Diseases, London, W1W 7FF, UK.
Prions are assemblies of misfolded prion protein that cause several fatal and transmissible neurodegenerative diseases, with the most common phenotype in humans being sporadic Creutzfeldt-Jakob disease (sCJD). Aside from variation of the prion protein itself, molecular risk factors are not well understood. Prion and prion-like mechanisms are thought to underpin common neurodegenerative disorders meaning that the elucidation of mechanisms could have broad relevance.
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