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NFKB pathway mutations in the Iranian cohort
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  • Nazanin Fathi,
  • Hassan Abolhassani,
  • Fereshteh Salami,
  • Tannaz Moeini Shad,
  • Samaneh Delavari,
  • Reza Yazdani,
  • Arash Kalantari,
  • Sareh Sadat Ebrahimi,
  • Nasrin Beniafard,
  • Alireza Mahdaviani,
  • Nima Rezaei
Nazanin Fathi
Children's Medical Center
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Hassan Abolhassani
Children's Medical Center
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Fereshteh Salami
Children's Medical Center
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Tannaz Moeini Shad
Children's Medical Center
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Samaneh Delavari
Children's Medical Center
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Reza Yazdani
Children's Medical Center
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Arash Kalantari
Imam Khomeini Hospital Complex
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Sareh Sadat Ebrahimi
Kerman University of Medical Sciences
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Nasrin Beniafard
Shahid Sadoughi University of Medical Sciences
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Alireza Mahdaviani
National Research Institute of Tuberculosis and Lung Diseases (NRITLD
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Nima Rezaei
Children's Medical Center

Corresponding Author:[email protected]

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Abstract

Background: Investigating and documenting novel mutations within inborn errors of immunity (IEIs) has demonstrably enriched our comprehension of disease causation. This encompasses elucidating the clinical and immunological presentations linked to specific gene alterations, ultimately leading to refined classification precision and, optimistically, improved treatment modalities. The present study aims to the profiles of patients within the Iranian IEI registry exhibiting mutations within the NFKB signaling pathway. Methods: Peripheral blood mononuclear cells were utilized for immunophenotyping of B and T lymphocyte subsets, and proliferation assays. Immunoblotting was employed to assess the expression levels of the corresponding protein in each patient harboring the respective variant. Results: The study cohort encompassed 17 patients: 8 with NFKB1 mutations, 5 with NFKB2 mutations, 3 with IKBKB mutations, and 1 with an IKBKG mutation. All NFKB1 and NFKB2 mutations presented as heterozygous, whereas IKBKB mutations were homozygous and the IKBKG mutation was hemizygous. The predominant clinical features included hypogammaglobulinemia and B cell subset disturbances, with T cell subsets and proliferation being normal in most, though not all, cases. Protein expression in patients generally mirrored healthy controls, except for two individuals harboring NFKB2 mutations. Conclusions: These findings provide novel IEI cases linked to NFKB pathway mutations. Comprehensive evaluation and functional analysis of novel mutations, confirming potential impacts on disease manifestation, also highlight the need for specialized care and further research within immunodeficiency disorders.
26 May 2024Submitted to Pediatric Allergy and Immunology
31 May 2024Submission Checks Completed
31 May 2024Assigned to Editor
29 Jun 2024Reviewer(s) Assigned