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Low Density Granulocytes and Dysregulated Neutrophils Driving Autoinflammatory Manifestations in NEMO Deficiency
Naz Surucu Yilmaz1, Sevgi Bilgic Eltan2,3,4, Basak Kayaoglu1
1Department of Biological Sciences, Middle East Technical University, B-58, Üniversiteler Mah. Dumlupınar Bulvarı No:1, Ankara, Turkey.
Abstract:
NF-κB essential modulator (NEMO, IKK-γ) deficiency is a rare combined immunodeficiency caused by mutations in the IKBKG gene. Conventionally, patients are afflicted with life threatening recurrent microbial infections. Paradoxically, the spectrum of clinical manifestations includes severe inflammatory disorders. The mechanisms leading to autoinflammation in NEMO deficiency are currently unknown. Herein, we sought to investigate the underlying mechanisms of clinical autoinflammatory manifestations in a 12-years old male NEMO deficiency (EDA-ID, OMIM #300,291) patient by comparing the immune profile of the patient before and after hematopoietic stem cell transplantation (HSCT). Response to NF-kB activators were measured by cytokine ELISA. Neutrophil and low-density granulocyte (LDG) populations were analyzed by flow cytometry. Peripheral blood mononuclear cells (PBMC) transcriptome before and after HSCT and transcriptome of sorted normal-density neutrophils and LDGs were determined using the NanoString nCounter gene expression panels. ISG15 expression and protein ISGylation was based on Immunoblotting. Consistent with the immune deficiency, PBMCs of the patient were unresponsive to toll-like and T cell receptor-activators. Paradoxically, LDGs comprised 35% of patient PBMCs and elevated expression of genes such as MMP9, LTF, and LCN2 in the granulocytic lineage, high levels of IP-10 in the patient's plasma, spontaneous ISG15 expression and protein ISGylation indicative of a spontaneous type I interferon (IFN) signature were observed, all of which normalized after HSCT. Collectively, our results suggest that type I IFN signature observed in the patient, dysregulated LDGs and spontaneously activated neutrophils, potentially contribute to tissue damage in NEMO deficiency.
Insights
NF-κB essential modulator (NEMO) deficiency causes immunodeficiency and inflammation. This study reveals a type I interferon signature and dysregulated neutrophils contribute to autoinflammation in NEMO deficiency, with normalization after stem cell transplant.
Area of Science:
- Immunology
- Genetics
- Molecular Biology
Background:
- NF-κB essential modulator (NEMO, IKK-γ) deficiency, caused by IKBKG gene mutations, presents as rare combined immunodeficiency.
- Patients typically experience severe infections, but paradoxically also exhibit severe inflammatory disorders.
- The mechanisms driving autoinflammation in NEMO deficiency remain largely unknown.
Purpose of the Study:
- To investigate the mechanisms underlying autoinflammatory manifestations in a patient with NEMO deficiency (EDA-ID).
- To compare the immune profile of the patient before and after hematopoietic stem cell transplantation (HSCT).
Main Methods:
- Analyzed patient immune profile pre- and post-HSCT.
- Measured NF-κB activator response via cytokine ELISA.
- Utilized flow cytometry for neutrophil and low-density granulocyte (LDG) analysis.
- Performed transcriptome analysis on PBMCs and sorted granulocytes using NanoString nCounter.
- Assessed ISG15 expression and protein ISGylation via immunoblotting.
Main Results:
- Patient PBMCs showed unresponsiveness to Toll-like and T cell receptor activators, consistent with immune deficiency.
- Elevated LDGs (35% of PBMCs), increased MMP9, LTF, LCN2 expression, high IP-10 plasma levels, and spontaneous type I interferon (IFN) signature (ISG15 expression/ISGylation) were observed.
- These abnormalities normalized after HSCT.
Conclusions:
- A type I IFN signature, dysregulated LDGs, and spontaneously activated neutrophils likely contribute to tissue damage in NEMO deficiency.
- HSCT effectively normalized the immune profile, resolving the autoinflammatory phenotype.
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