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Genetic, immunological, and clinical features of 32 patients with autosomal recessive STAT1 deficiency

  • Tom Le Voyer
  • , Sonoko Sakata
  • , Miyuki Tsumura
  • , Taushif Khan
  • , Ana Esteve-Sole
  • , Bandar K. Al-Saud
  • , Hatice Eke Gungor
  • , Prasad Taur
  • , Valentine Jeanne-Julien
  • , Mette Christiansen
  • , Lisa Maria Kohler
  • , Gehad Eltayeb ElGhazali
  • , Jeremie Rosain
  • , Shiho Nishimura
  • , Fumiaki Sakura
  • , Matthieu Bouaziz
  • , Carmen Oleaga-Quintas
  • , Alejandro Nieto-Patlan
  • , Angela Deya-Martinez
  • , Yasemin Altuner Torun
  • Anna Lena Neehus, Manon Roynard, Sefika Elmas Bozdemir, Nawal Al Kaabi, Moza Al Hassani, Irina Mersiyanova, Flore Rozenberg, Carsten Speckmann, Ina Hainmann, Fabian Hauck, Mohammed Hamdan Alzahrani, Sami Hussain Alhajjar, Saleh Al-Muhsen, Theresa Cole, Ramsay Fuleihan, Peter D. Arkwright, Raffaele Badolato, Laia Alsina, Laurent Abel, Mukesh Desai, Hamoud Al-Mousa, Anna Shcherbina, Nico Marr, Stéphanie Boisson-Dupuis, Jean Laurent Casanova, Satoshi Okada, Jacinta Bustamante
  • Institut national de la santé et de la recherche médicale
  • Université Paris Cité
  • Hiroshima University
  • Sidra Medicine
  • University of Barcelona
  • King Faisal Specialist Hospital and Research Centre
  • Kayseri Education and Research Hospital
  • Bai Jerbai Wadia Hospital for Children
  • Aarhus University
  • Ludwig Maximilian University of Munich
  • Instituto Politécnico Nacional
  • Istinye University
  • Dmitry Rogachev National Research Center of Pediatric Hematology, Oncology and Immunology
  • University of Freiburg
  • University of Bonn
  • Security Forces Hospital Program Riyadh
  • King Saud University
  • Royal Children's Hospital, Melbourne
  • Northwestern University
  • University of Manchester
  • University of Brescia
  • Rockefeller University
  • Oncology and Immunology
  • Howard Hughes Medical Institute

Research output: Contribution to journalArticlepeer-review

58 Scopus citations

Abstract

Autosomal recessive (AR) STAT1 deficiency is a severe inborn error of immunity disrupting cellular responses to type I, II, and III IFNs, and IL-27, and conferring a predisposition to both viral and mycobacterial infections.We report the genetic, immunological, and clinical features of an international cohort of 32 patients from 20 kindreds: 24 patients with complete deficiency, and 8 patients with partial deficiency. Twenty-four patients suffered from mycobacterial disease (bacillus Calmette Guerin = 13, environmental mycobacteria = 10, or both in 1 patient). Fifty-four severe viral episodes occurred in sixteen patients, mainly caused by Herpesviridae viruses. Attenuated live measles, mumps, and rubella and/or varicella zoster virus vaccines triggered severe reactions in the five patients with complete deficiency who were vaccinated. Seven patients developed features of hemophagocytic syndrome. Twenty-one patients died, and death was almost twice as likely in patients with complete STAT1 deficiency than in those with partial STAT1 deficiency. All but one of the eight survivors with AR complete deficiency underwent hematopoietic stem cell transplantation. Overall survival after hematopoietic stem cell transplantation was 64%. A diagnosis of AR STAT1 deficiency should be considered in children with mycobacterial and/or viral infectious diseases. It is important to distinguish between complete and partial forms of AR STAT1 deficiency, as their clinical outcome and management differ significantly.

Original languageEnglish
Pages (from-to)133-152
Number of pages20
JournalJournal of Immunology
Volume207
Issue number1
DOIs
StatePublished - 1 Jul 2021

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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