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Osteoporosis and skeletal dysplasia caused by pathogenic variants in SGMS2

Pekkinen, M. (author)
Terhal, P. A. (author)
Botto, L. D. (author)
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Henning, Petra, 1974 (author)
Gothenburg University,Göteborgs universitet,Institutionen för medicin, avdelningen för invärtesmedicin och klinisk nutrition,Centre for Bone and Arthritis Research,Institute of Medicine, Department of Internal Medicine and Clinical Nutrition
Makitie, R. E. (author)
Roschger, P. (author)
Jain, A. (author)
Magnusson, Maria K, 1972 (author)
Gothenburg University,Göteborgs universitet,Institutionen för biomedicin, avdelningen för mikrobiologi och immunologi,Institute of Biomedicine, Department of Microbiology and Immunology
Kjellberg, M. A. (author)
Paschalis, E. P. (author)
van Lassen, K. (author)
Murray, M. (author)
Bayrak-Toydemir, P. (author)
Magnusson, Maria K, 1972 (author)
Gothenburg University,Göteborgs universitet,Institutionen för biomedicin, avdelningen för mikrobiologi och immunologi,Institute of Biomedicine, Department of Microbiology and Immunology
Jans, J. (author)
Kausar, M. (author)
Carey, J. C. (author)
Somerharju, P. (author)
Lerner, Ulf H (author)
Gothenburg University,Göteborgs universitet,Centre for Bone and Arthritis Research,Institutionen för medicin, avdelningen för invärtesmedicin och klinisk nutrition,Institute of Medicine, Department of Internal Medicine and Clinical Nutrition
Olkkonen, V. M. (author)
Karolinska Institutet
Klaushofer, K. (author)
Holthuis, J. C. M. (author)
Makitie, O. (author)
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 (creator_code:org_t)
2019-04-04
2019
English.
In: Jci Insight. - : American Society for Clinical Investigation. - 2379-3708. ; 4:7
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Mechanisms leading to osteoporosis are incompletely understood. Genetic disorders with skeletal fragility provide insight into metabolic pathways contributing to bone strength. We evaluated 6 families with rare skeletal phenotypes and osteoporosis by next-generation sequencing. In all the families, we identified a heterozygous variant in SGMS2, a gene prominently expressed in cortical bone and encoding the plasma membrane-resident sphingomyelin synthase SMS2. Four unrelated families shared the same nonsense variant, c.148C>T (p.Arg50*), whereas the other families had a missense variant, c.185T>G (p.IIe62Ser) or c.191T>G (p.Met64Arg). Subjects with p.Arg50* presented with childhood-onset osteoporosis with or without cranial sclerosis. Patients with p.IIe62Ser or p.Met64Arg had a more severe presentation, with neonatal fractures, severe short stature, and spondylometaphyseal dysplasial Several subjects had experienced peripheral facial nerve palsy or other neurological manifestations. Bone biopsies showed markedly altered bone material characteristics, including defective bone mineralization. Osteoclast formation and function in vitro was normal. While the p.Arg50* mutation yielded a catalytically inactive enzyme, p.IIe62Ser and p.Met64Arg each enhanced the rate of de novo sphingomyelin production by blocking export of a functional enzyme from the endoplasmic reticulum. SGMS2 pathogenic variants underlie a spectrum of skeletal conditions, ranging from isolated osteoporosis to complex skeletal dysplasia, suggesting a critical role for plasma membrane-bound sphingomyelin metabolism in skeletal homeostasis.

Subject headings

MEDICIN OCH HÄLSOVETENSKAP  -- Klinisk medicin -- Ortopedi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Clinical Medicine -- Orthopaedics (hsv//eng)

Keyword

mineralization density distribution
calvarial doughnut lesions
relative quantification
normative data
sphingomyelin
osteogenesis
metabolism
mutations
sphingosine-1-phosphate
osteopetrosis

Publication and Content Type

ref (subject category)
art (subject category)

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