PLS3 Mutations in X-Linked Osteoporosis: Clinical and Genetic Features in Five New Families
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Published:2023-12-03
Issue:2
Volume:114
Page:157-170
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ISSN:1432-0827
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Container-title:Calcified Tissue International
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language:en
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Short-container-title:Calcif Tissue Int
Author:
Costa AdrianaORCID, Martins AndreiaORCID, Machado CatarinaORCID, Lundberg ElenaORCID, Nilsson OlaORCID, Wang Fan, Costantini Alice, Tournis SymeonORCID, Höppner JakobORCID, Grasemann CorinnaORCID, Mäkitie OutiORCID
Abstract
AbstractChildhood-onset osteoporosis is a rare but clinically significant condition. Studies have shown pathogenic variants in more than 20 different genes as causative for childhood-onset primary osteoporosis. The X-chromosomal PLS3, encoding Plastin-3, is one of the more recently identified genes. In this study, we describe five new families from four different European countries with PLS3-related skeletal fragility. The index cases were all hemizygous males presenting with long bone and vertebral body compression fractures. All patients had low lumbar spine bone mineral density (BMD). The age at the first clinical fracture ranged from 1.5 to 13 years old. Three of the identified PLS3 variants were stop-gain variants and two were deletions involving either a part or all exons of the gene. In four families the variant was inherited from the mother. All heterozygous women reported here had normal BMD and no bone fractures. Four patients received bisphosphonate treatment with good results, showing a lumbar spine BMD increment and vertebral body reshaping after 10 months to 2 years of treatment. Our findings expand the genetic spectrum of PLS3-related osteoporosis. Our report also shows that early treatment with bisphosphonates may influence the disease course and reduce the progression of osteoporosis, highlighting the importance of early diagnosis for prompt intervention and appropriate genetic counseling.
Funder
ESPE Research Unit Grant, the Academy of Finland Vetenskapsrådet Konung Gustaf V:s och Drottning Victorias Frimurarestiftelse Sigrid Juséliuksen Säätiö Hospital Amadora-Sintra, S.A.
Publisher
Springer Science and Business Media LLC
Subject
Endocrinology,Orthopedics and Sports Medicine,Endocrinology, Diabetes and Metabolism
Reference26 articles.
1. van Dijk FS, Zillikens MC, Micha D, Riessland M, Marcelis CL, de Die-Smulders CE, Milbradt J, Franken AA, Harsevoort AJ, Lichtenbelt KD, Pruijs HE, Rubio-Gozalbo ME, Zwertbroek R, Moutaouakil Y, Egthuijsen J, Hammerschmidt M, Bijman R, Semeins CM, Bakker AD, Everts V, Klein-Nulend J, Campos-Obando N, Hofman A, te Meerman GJ, Verkerk AJ, Uitterlinden AG, Maugeri A, Sistermans EA, Waisfisz Q, Meijers-Heijboer H, Wirth B, Simon ME, Pals G (2013) PLS3 mutations in X-linked osteoporosis with fractures. N Engl J Med 369(16):1529–1536. https://doi.org/10.1056/NEJMoa1308223 2. Wang L, Bian X, Cheng G, Zhao P, Xiang X, Tian W, Li T, Zhai Q (2020) A novel nonsense variant in PLS3 causes X-linked osteoporosis in a Chinese family. Ann Hum Genet 84(1):92–96. https://doi.org/10.1111/ahg.12344 3. Kannu P, Mahjoub A, Babul-Hirji R, Carter MT, Harrington J (2017) PLS3 mutations in X-linked osteoporosis: clinical and bone characteristics of two novel mutations. Horm Res Paediatr 88(3–4):298–304. https://doi.org/10.1159/000477242 4. International Society for Clinical Densitometry. 2019 Official positions pediatric and adults. Published in June 2019. https://iscd.org/learn/official-positions/. Accessed 3 Nov 2021 5. Mäkitie O, Zillikens MC (2022) Early-onset osteoporosis. Calcif Tissue Int 110(5):546–561. https://doi.org/10.1007/s00223-021-00885-6
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