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Published on: February 16, 2015
ER proteostasis failure in HYOU1 deficiency alters B cells, neutrophils, and interferon signalling
Aida Idani1,2, Sabrina Bibi-Triki1,2, Tristan Stemmelen1,2,3
1Molecular Immuno-Rheumatology Laboratory (IRM), INSERM UMR_S 1109, GENOMAX-CYTOMAX Platforms, Immunology and Hematology Research Center, Strasbourg Research Center in Biomedicine (CRBS), Strasbourg Federation of Translational Medicine (FMTS), School of Medicine, University of Strasbourg, Strasbourg, France.
Abstract:
Hypoxia upregulated 1 (HYOU1) is a stress-inducible ER chaperone. We investigated 2 unrelated patients carrying biallelic HYOU1 variants and presenting with primary immunodeficiency. Patient 1, homozygous for p.Pro444His, displayed failure to thrive, hypoglycemia, B cell lymphopenia, and neutropenia. Patient 2, compound heterozygous for p.Arg262Gln and p.Pro757_Glu758insAla, exhibited recurrent infections, enteropathy, and hypogammaglobulinemia. In Patient 1, while HYOU1 transcription was preserved, the protein was severely reduced. Tunicamycin treatment of dermal fibroblasts showed a blunted unfolded protein response and defective induction of ER stress-responsive genes. Immunophenotyping showed near-absence of circulating B cells, and single-cell RNA sequencing of bone marrow identified an arrest at the pro-B cell stage. Neutrophils displayed hypogranulation and dysregulated IFN- and apoptosis-associated transcriptional signatures, unresponsive to G-CSF. HYOU1 deficiency hence results in ER stress-induced proteostasis failure that simultaneously impairs adaptive immunity through B cell developmental arrest and innate immunity through neutrophil dysfunction and IFN pathway imbalance. This work expands the spectrum of HYOU1 deficiency and further identifies ER proteostasis as a central determinant of immune homeostasis.
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