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.

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.