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Novel manifestations of immune dysregulation and granule defects in gray platelet syndrome

  • NIHR BioResource
  • University of Cambridge
  • NHS Blood and Transplant
  • Oxford University Hospitals NHS Foundation Trust
  • Barts Health NHS Trust
  • Royal Free London NHS Foundation Trust
  • Cambridge University Hospitals NHS Foundation Trust
  • Robert Debré
  • Leibniz-Institut für Analytische Wissenschaften
  • University of Cambridge
  • University of Manchester
  • INSERM 1263
  • University of Perugia
  • NHS Greater Glasgow and Clyde
  • Catholic University of the Sacred Heart
  • Fondazione Policlinico Universitario A.Gemelli IRCS
  • University of Greifswald
  • Queen Mary University of London
  • University of Dundee
  • Hospices civils de Lyon
  • University of Copenhagen
  • Harvard University
  • University Hospital Center of Santo António
  • University of Porto
  • University of California at Irvine
  • University of California at San Diego
  • University of Milan
  • University of Calgary
  • Ben-Gurion University of the Negev
  • Schneider Childrens Medical Center Israel
  • Tel Aviv University

Research output: Contribution to journalArticlepeer-review

50 Scopus citations

Abstract

Gray platelet syndrome (GPS) is a rare recessive disorder caused by biallelic variants in NBEAL2 and characterized by bleeding symptoms, the absence of platelet a-granules, splenomegaly, and bone marrow (BM) fibrosis. Due to the rarity of GPS, it has been difficult to fully understand the pathogenic processes that lead to these clinical sequelae. To discern the spectrum of pathologic features, we performed a detailed clinical genotypic and phenotypic study of 47 patients with GPS and identified 32 new etiologic variants in NBEAL2. The GPS patient cohort exhibited known phenotypes, including macrothrombocytopenia, BM fibrosis, megakaryocyte emperipolesis of neutrophils, splenomegaly, and elevated serum vitamin B12 levels. Novel clinical phenotypes were also observed, including reduced leukocyte counts and increased presence of autoimmune disease and positive autoantibodies. There were widespread differences in the transcriptome and proteome of GPS platelets, neutrophils, monocytes, and CD4 lymphocytes. Proteins less abundant in these cells were enriched for constituents of granules, supporting a role for Nbeal2 in the function of these organelles across a wide range of blood cells. Proteomic analysis of GPS plasma showed increased levels of proteins associated with inflammation and immune response. One-quarter of plasma proteins increased in GPS are known to be synthesized outside of hematopoietic cells, predominantly in the liver. In summary, our data show that, in addition to the well-described platelet defects in GPS, there are immune defects. The abnormal immune cells may be the drivers of systemic abnormalities such as autoimmune disease.

Original languageEnglish
Pages (from-to)1956-1967
Number of pages12
JournalBlood
Volume136
Issue number17
DOIs
StatePublished - Oct 22 2020

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