Mosaic IL6ST variant inducing constitutive GP130 cytokine receptor signaling as a cause of neonatal onset immunodeficiency with autoinflammation and dysmorphy

Author:

Materna-Kiryluk Anna1,Pollak Agnieszka2,Gawalski Karol3,Szczawinska-Poplonyk Aleksandra4,Rydzynska Zuzanna3,Sosnowska Anna3,Cukrowska Bożena5,Gasperowicz Piotr2,Konopka Ewa5,Pietrucha Barbara6,Grzywa Tomasz M37ORCID,Banaszak-Ziemska Magdalena8,Niedziela Marek8,Skalska-Sadowska Jolanta9,Stawiński Piotr2,Śladowski Dariusz10,Nowis Dominika11,Ploski Rafal2ORCID

Affiliation:

1. Polish Registry of Congenital Malformations, Chair and Department of Medical Genetics, Poznan University of Medical Sciences, Poznan 61-701, Poland

2. Department of Medical Genetics, Warsaw Medical University, Warsaw 02-106, Poland

3. Department of Immunology, Medical University of Warsaw, Warsaw 02-097, Poland

4. Department of Pediatric Pneumonology, Allergology and Clinical Immunology, Institute of Pediatrics, Poznan University of Medical Sciences, Poznan 60-572, Poland

5. Laboratory of Immunology, Department of Pathology, The Children’s Memorial Health Institute, Warsaw 04-730, Poland

6. Department of Clinical Immunology, The Children’s Memorial Health Institute, Warsaw 04-730, Poland

7. The Doctoral School of the Medical University of Warsaw, Warsaw 02-091, Poland

8. Department of Pediatric Endocrinology and Rheumatology, Institute of Pediatrics, Poznan University of Medical Sciences, Poznan 60-572, Poland

9. Department of Pediatric Oncology, Hematology and Transplantology University of Medical Sciences, Poznań 61-854, Poland

10. Department of Transplantology and Central Tissue Bank, Centre for Biostructure, Medical University of Warsaw, Warsaw 02-004, Poland

11. Laboratory of Experimental Medicine, Medical University of Warsaw, Warsaw 02-097, Poland

Abstract

Abstract Interleukin-6 signal transducer (IL6ST) encodes the GP130 protein which transduces the proinflammatory signaling of the IL6 cytokine family through Janus kinase signal transducers and activators of transcription pathway (JAK/STAT) activation. Biallelic loss-of-function IL6ST variants cause autosomal recessive hyper-IgE syndrome or a variant of the Stuve–Wiedemann syndrome. Somatic gain-of-function IL6ST mutations, in particular, small monoallelic in-frame deletions of which the most prevalent is the IL6ST Ser187_Tyr190del, are an established cause of inflammatory hepatocellular tumors, but so far, no disease caused by such mutations present constitutively has been described. Herein, we report a pediatric proband with a novel syndrome of neonatal onset immunodeficiency with autoinflammation and dysmorphy associated with the IL6ST Tyr186_Tyr190del variant present constitutively. Tyr186_Tyr190del was found by exome sequencing and was shown to be de novo (absent in proband’s parents and siblings) and mosaic (present in approximately 15–40% of cells depending on the tissue studied—blood, urine sediment, hair bulbs and buccal swab). Functional studies were performed in the Epstein–Barr virus-immortalized patient’s B cell lymphoblastoid cell line, which carried the variant in approximately 95% of the cells. Western blot showed that the patient’s cells exhibited constitutive hyperphosphorylation of Tyr705 in STAT3, which is indicative of IL6-independent activation of GP130. Interestingly, the STAT3 phosphorylation could be inhibited with ruxolitinib as well as tofacitinib, which are clinically approved JAK1 and JAK3 (to lesser extent JAK2 and JAK1) inhibitors, respectively. Given our results and the recent reports of ruxolitinib and tofacitinib use for the treatment of diseases caused by direct activation of STAT3 or STAT1, we speculate that these drugs may be effective in the treatment of our patient’s condition.

Funder

iONCO

Medical University of Warsaw

Polish Ministry of Science and Higher Education

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

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