Human oncostatin M deficiency underlies an inherited severe bone marrow failure syndrome.

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作者:Garrigue Alexandrine, Kermasson Laëtitia, Susini Sandrine, Fert Ingrid, Mahony Christopher B, Sadek Hanem, Luce Sonia, Chouteau Myriam, Cavazzana Marina, Six Emmanuelle, Le Bousse-Kerdilès Marie-Caroline, Anginot Adrienne, Souraud Jean-Baptiste, Cormier-Daire Valérie, Willems Marjolaine, Sirvent Anne, Russello Jennifer, Callebaut Isabelle, André Isabelle, Bertrand Julien Y, Lagresle-Peyrou Chantal, Revy Patrick
Oncostatin M (OSM) is a cytokine with the unique ability to interact with both the OSM receptor (OSMR) and the leukemia inhibitory factor receptor (LIFR). On the other hand, OSMR interacts with IL31RA to form the interleukin-31 receptor. This intricate network of cytokines and receptors makes it difficult to understand the specific function of OSM. While monoallelic loss-of-function (LoF) mutations in OSMR underlie autosomal dominant familial primary localized cutaneous amyloidosis, the in vivo consequences of human OSM deficiency have never been reported so far. Here, we identified 3 young individuals from a consanguineous family presenting with inherited severe bone marrow failure syndromes (IBMFS) characterized by profound anemia, thrombocytopenia, and neutropenia. Genetic analysis revealed a homozygous 1 base-pair insertion in the sequence of OSM associated with the disease. Structural and functional analyses showed that this variant causes a frameshift that replaces the C-terminal portion of OSM, which contains the FxxK motif that interacts with both OSMR and LIFR, with a neopeptide. The lack of detection and signaling of the mutant OSM suggests a LoF mutation. Analysis of zebrafish models further supported the role of the OSM/OSMR signaling in erythroid progenitor proliferation and neutrophil differentiation. Our study provides the previously uncharacterized and unexpectedly limited in vivo consequence of OSM deficiency in humans.

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