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Mutations in EXTL3 Cause Neuro-immuno-skeletal Dysplasia Syndrome

Authors :
Talia Hartley
Machteld M. Oud
Paul Tuijnenburg
Chela James
Hywel Williams
Taco W. Kuijpers
Machiel H. Jansen
Hans G. Brunner
Maja Hempel
Rui Li
Louise Ocaka
Polona Le Quesne Stabej
PL Beales
Catherine M. Cale
Steven T. Pals
Ronald J.A. Wanders
Zemin Ren
Naomi van Vlies
Davor Lessel
Heleen H. Arts
Rosalind Jane Davies
Christine Hall
Patricia Dias
Lucie Dupuis
Sacha Ferdinandusse
Tim M. Strom
E. Graham Davies
Chiara Bacchelli
Hartmut Engels
Jan-Maarten Cobben
René Santer
Jessika Johannsen
Marielle Alders
Sérgio B. Sousa
Ronald Roepman
Roberto Mendoza-Londono
Ingo Müller
Kai Lehmberg
Laboratory Genetic Metabolic Diseases
ARD - Amsterdam Reproduction and Development
Human Genetics
Paediatric Metabolic Diseases
Pathology
ANS - Cellular & Molecular Mechanisms
Paediatric Genetics
Paediatric Infectious Diseases / Rheumatology / Immunology
AGEM - Amsterdam Gastroenterology Endocrinology Metabolism
ACS - Pulmonary hypertension & thrombosis
MUMC+: DA Klinische Genetica (5)
Klinische Genetica
RS: FHML non-thematic output
Source :
American journal of human genetics, 100(2), 281-296. Cell Press, American Journal of Human Genetics, 100(2), 281-296. Cell Press, American Journal of Human Genetics, 100, 281-296, American Journal of Human Genetics, 100, 2, pp. 281-296, Am. J. Hum. Genet. 100, 281-296 (2017)
Publication Year :
2017

Abstract

Contains fulltext : 169755.pdf (Publisher’s version ) (Open Access) EXTL3 regulates the biosynthesis of heparan sulfate (HS), important for both skeletal development and hematopoiesis, through the formation of HS proteoglycans (HSPGs). By whole-exome sequencing, we identified homozygous missense mutations c.1382C>T, c.1537C>T, c.1970A>G, and c.2008T>G in EXTL3 in nine affected individuals from five unrelated families. Notably, we found the identical homozygous missense mutation c.1382C>T (p.Pro461Leu) in four affected individuals from two unrelated families. Affected individuals presented with variable skeletal abnormalities and neurodevelopmental defects. Severe combined immunodeficiency (SCID) with a complete absence of T cells was observed in three families. EXTL3 was most abundant in hematopoietic stem cells and early progenitor T cells, which is in line with a SCID phenotype at the level of early T cell development in the thymus. To provide further support for the hypothesis that mutations in EXTL3 cause a neuro-immuno-skeletal dysplasia syndrome, and to gain insight into the pathogenesis of the disorder, we analyzed the localization of EXTL3 in fibroblasts derived from affected individuals and determined glycosaminoglycan concentrations in these cells as well as in urine and blood. We observed abnormal glycosaminoglycan concentrations and increased concentrations of the non-sulfated chondroitin disaccharide D0a0 and the disaccharide D0a4 in serum and urine of all analyzed affected individuals. In summary, we show that biallelic mutations in EXTL3 disturb glycosaminoglycan synthesis and thus lead to a recognizable syndrome characterized by variable expression of skeletal, neurological, and immunological abnormalities.

Details

Language :
English
ISSN :
00029297
Volume :
100
Issue :
2
Database :
OpenAIRE
Journal :
American Journal of Human Genetics
Accession number :
edsair.doi.dedup.....49b8b33f3e0c38cbbf870985c97c9fed