Expanding the phenotype of SPARC-related osteogenesis imperfecta: clinical findings in two patients with pathogenic variants in SPARC and literature review
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Published:2021-08-30
Issue:
Volume:
Page:jmedgenet-2021-107942
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ISSN:0022-2593
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Container-title:Journal of Medical Genetics
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language:en
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Short-container-title:J Med Genet
Author:
Durkin AnnaORCID, DeVile Catherine, Arundel Paul, Bull Mary, Walsh Jennifer, Bishop Nicholas J, Hupin Emilie, Parekh Susan, Nadarajah Ramesh, Offiah Amaka CORCID, Calder Alistair, Brock Joanna, Baker Duncan, Balasubramanian MeenaORCID
Abstract
BackgroundSecreted protein, acidic, cysteine rich (SPARC)-related osteogenesis imperfecta (OI), also referred to as OI type XVII, was first described in 2015, since then there has been only one further report of this form of OI. SPARC is located on chromosome 5 between bands q31 and q33. The encoded protein is necessary for calcification of the collagen in bone, synthesis of extracellular matrix and the promotion of changes to cell shape.MethodsWe describe a further two patients with previously unreported homozygous SPARC variants with OI: one splice site; one nonsense pathogenic variant. We present detailed information on the clinical and radiological phenotype and correlate this with their genotype. There are only two previous reports by Mendozo-Londono et al and Hayat et al with clinical descriptions of patients with SPARC variants.ResultsFrom the data we have obtained, common clinical features in individuals with OI type XVII caused by SPARC variants include scoliosis (5/5), vertebral compression fractures (5/5), multiple long bone fractures (5/5) and delayed motor development (3/3). Interestingly, 2/4 patients also had abnormal brain MRI, including high subcortical white matter changes, abnormal fluid-attenuated inversion in the para-atrial white matter and a large spinal canal from T10 to L1. Of significance, both patients reported here presented with significant neuromuscular weakness prompting early workup.ConclusionCommon phenotypic expressions include delayed motor development with neuromuscular weakness, scoliosis and multiple fractures. The data presented here broaden the phenotypic spectrum establishing similar patterns of neuromuscular presentation with a presumed diagnosis of ‘myopathy’.
Subject
Genetics(clinical),Genetics
Reference20 articles.
1. Marini JC , Dang Do AN . Osteogenesis Imperfecta. In: Feingold KR , Anawalt B , Boyce A , Chrousos G , de Herder WW , Dungan K , Grossman A , Hershman JM , Hofland J , Kaltsas G , Koch C , Kopp P , Korbonits M , McLachlan R , Morley JE , New M , Purnell J , Singer F , Stratakis CA , Trence DL , Wilson DP , eds. Endotext [Internet]. South Dartmouth (MA): MDText.com, Inc, 2020. 2. A scoring system for the assessment of clinical severity in osteogenesis imperfecta;Aglan;J Child Orthop,2012 3. Osteogenesis imperfecta;Rauch;The Lancet,2004 4. Developing pathways to clarify pathogenicity of unclassified variants in osteogenesis imperfecta genetic analysis;Balasubramanian;Mol Genet Genomic Med,2019 5. Osteogenesis imperfecta;Marini;Nat Rev Dis Primers,2017
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