Whole-exome sequencing-based discovery of STIM1 deficiency in a child with fatal classic Kaposi sarcoma

Author:

Byun Minji1,Abhyankar Avinash1,Lelarge Virginie2,Plancoulaine Sabine34,Palanduz Ayse5,Telhan Leyla6,Boisson Bertrand1,Picard Capucine347,Dewell Scott8,Zhao Connie8,Jouanguy Emmanuelle134,Feske Stefan2,Abel Laurent134,Casanova Jean-Laurent1349

Affiliation:

1. St. Giles Laboratory of Human Genetics of Infectious Diseases, Rockefeller Branch, The Rockefeller University, New York, NY 10065

2. Department of Pathology, New York University, Langone Medical Center, New York, NY 10016

3. Laboratory of Human Genetics of Infectious Diseases, Necker Branch, Institut National de la Santé et de la Recherche Médicale, U980, 75015 Paris, France

4. Paris Descartes University, Necker Medical School, 75015 Paris, France

5. Department of Family Medicine, Istanbul Faculty of Medicine, Istanbul University, Istanbul, Turkey

6. Department of Pediatric Infectious Diseases, Sisli Etfal Training and Research Hospital, Istanbul, Turkey

7. Study Center of Immunodeficiencies, Necker Hospital, AP-HP, 75015 Paris, France

8. Genomics Resource Center, The Rockefeller University, New York, NY 10065

9. Pediatric Hematology-Immunology Unit, Necker Hospital, AP-HP, 75015 Paris, France

Abstract

Classic Kaposi sarcoma (KS) is exceedingly rare in children from the Mediterranean Basin, despite the high prevalence of human herpesvirus-8 (HHV-8) infection in this region. We hypothesized that rare single-gene inborn errors of immunity to HHV-8 may underlie classic KS in childhood. We investigated a child with no other unusually severe infectious or tumoral phenotype who died from disseminated KS at two years of age. Whole-exome sequencing in the patient revealed a homozygous splice-site mutation in STIM1, the gene encoding stromal interaction molecule 1, which regulates store-operated Ca2+ entry. STIM1 mRNA splicing, protein production, and Ca2+ influx were completely abolished in EBV-transformed B cell lines from the patient, but were rescued by the expression of wild-type STIM1. Based on the previous discovery of STIM1 deficiency in a single family with a severe T cell immunodeficiency and the much higher risk of KS in individuals with acquired T cell deficiencies, we conclude that STIM1 T cell deficiency precipitated the development of lethal KS in this child upon infection with HHV-8. Our report provides the first evidence that isolated classic KS in childhood may result from single-gene defects and provides proof-of-principle that whole-exome sequencing in single patients can decipher the genetic basis of rare inborn errors.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

Reference35 articles.

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2. Human genetics of infectious diseases: between proof of principle and paradigm;Alcaïs;J. Clin. Invest.,2009

3. Primary Kaposi’s sarcoma of the lymph node in children;Bisceglia;Cancer.,1988

4. Epidemiology and pathogenesis of Kaposi’s sarcoma-associated herpesvirus;Boshoff;Philos. Trans. R. Soc. Lond. B Biol. Sci.,2001

5. HHV-8-associated Kaposi sarcoma in a child with IFNgammaR1 deficiency;Camcioglu;J. Pediatr.,2004

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