Literature DB >> 25063546

Juvenile Paget's disease with heterozygous duplication within TNFRSF11A encoding RANK.

Michael P Whyte1, Cristina Tau2, William H McAlister3, Xiafang Zhang4, Deborah V Novack5, Virginia Preliasco6, Eduardo Santini-Araujo7, Steven Mumm8.   

Abstract

Mendelian disorders of RANKL/OPG/RANK signaling feature the extremes of aberrant osteoclastogenesis and cause either osteopetrosis or rapid turnover skeletal disease. The patients with autosomal dominant accelerated bone remodeling have familial expansile osteolysis, early-onset Paget's disease of bone, expansile skeletal hyperphosphatasia, or panostotic expansile bone disease due to heterozygous 18-, 27-, 15-, and 12-bp insertional duplications, respectively, within exon 1 of TNFRSF11A that encodes the signal peptide of RANK. Juvenile Paget's disease (JPD), an autosomal recessive disorder, manifests extremely fast skeletal remodeling, and is usually caused by loss-of-function mutations within TNFRSF11B that encodes OPG. These disorders are ultra-rare. A 13-year-old Bolivian girl was referred at age 3years. One femur was congenitally short and curved. Then, both bowed. Deafness at age 2years involved missing ossicles and eroded cochleas. Teeth often had absorbed roots, broke, and were lost. Radiographs had revealed acquired tubular bone widening, cortical thickening, and coarse trabeculation. Biochemical markers indicated rapid skeletal turnover. Histopathology showed accelerated remodeling with abundant osteoclasts. JPD was diagnosed. Immobilization from a femur fracture caused severe hypercalcemia that responded rapidly to pamidronate treatment followed by bone turnover marker and radiographic improvement. No TNFRSF11B mutation was found. Instead, a unique heterozygous 15-bp insertional tandem duplication (87dup15) within exon 1 of TNFRSF11A predicted the same pentapeptide extension of RANK that causes expansile skeletal hyperphosphatasia (84dup15). Single nucleotide polymorphisms in TNFRSF11A and TNFRSF11B possibly impacted her phenotype. Our findings: i) reveal that JPD can be associated with an activating mutation within TNFRSF11A, ii) expand the range and overlap of phenotypes among the Mendelian disorders of RANK activation, and iii) call for mutation analysis to improve diagnosis, prognostication, recurrence risk assessment, and perhaps treatment selection among the monogenic disorders of RANKL/OPG/RANK activation.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Bone remodeling; Deafness; Osteolysis; Osteoprotegerin; Tooth loss; Vascular calcification

Mesh:

Substances:

Year:  2014        PMID: 25063546      PMCID: PMC4189967          DOI: 10.1016/j.bone.2014.07.019

Source DB:  PubMed          Journal:  Bone        ISSN: 1873-2763            Impact factor:   4.398


  65 in total

1.  Characterization of eight different tetracyclines: advances in fluorescence bone labeling.

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Journal:  J Anat       Date:  2010-04-26       Impact factor: 2.610

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6.  Genetic variation in the TNFRSF11A gene encoding RANK is associated with susceptibility to Paget's disease of bone.

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Journal:  J Bone Miner Res       Date:  2011-08       Impact factor: 6.741

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  12 in total

Review 1.  Hypophosphatemic osteosclerosis, hyperostosis, and enthesopathy associated with novel homozygous mutations of DMP1 encoding dentin matrix protein 1 and SPP1 encoding osteopontin: The first digenic SIBLING protein osteopathy?

Authors:  Michael P Whyte; S Deepak Amalnath; William H McAlister; Marc D McKee; Deborah J Veis; Margaret Huskey; Shenghui Duan; Vinieth N Bijanki; Suhas Alur; Steven Mumm
Journal:  Bone       Date:  2019-12-13       Impact factor: 4.398

Review 2.  Human Genetics of Sclerosing Bone Disorders.

Authors:  Raphaël De Ridder; Eveline Boudin; Geert Mortier; Wim Van Hul
Journal:  Curr Osteoporos Rep       Date:  2018-06       Impact factor: 5.096

3.  Acquired resistance to pamidronate treated effectively with zoledronate in juvenile Paget's disease.

Authors:  E N Gonc; A Ozon; G Buyukyilmaz; A Alikasifoglu; O P Simsek; N Kandemir
Journal:  Osteoporos Int       Date:  2018-03-03       Impact factor: 4.507

Review 4.  Rare Inherited forms of Paget's Disease and Related Syndromes.

Authors:  Stuart H Ralston; J Paul Taylor
Journal:  Calcif Tissue Int       Date:  2019-02-13       Impact factor: 4.333

Review 5.  Camurati-Engelmann Disease.

Authors:  Wim Van Hul; Eveline Boudin; Filip M Vanhoenacker; Geert Mortier
Journal:  Calcif Tissue Int       Date:  2019-02-05       Impact factor: 4.333

Review 6.  Paget's disease of bone-genetic and environmental factors.

Authors:  Frederick R Singer
Journal:  Nat Rev Endocrinol       Date:  2015-08-18       Impact factor: 43.330

Review 7.  Osteoclasts-Key Players in Skeletal Health and Disease.

Authors:  Deborah Veis Novack; Gabriel Mbalaviele
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Review 8.  Auricular ossification: A newly recognized feature of osteoprotegerin-deficiency juvenile Paget disease.

Authors:  Gary S Gottesman; Katherine L Madson; William H McAlister; Angela Nenninger; Deborah Wenkert; Steven Mumm; Michael P Whyte
Journal:  Am J Med Genet A       Date:  2016-01-14       Impact factor: 2.802

9.  CHMP5 controls bone turnover rates by dampening NF-κB activity in osteoclasts.

Authors:  Matthew B Greenblatt; Kwang Hwan Park; Hwanhee Oh; Jung-Min Kim; Dong Yeon Shin; Jae Myun Lee; Jin Woo Lee; Anju Singh; Ki-young Lee; Dorothy Hu; Changchun Xiao; Julia F Charles; Josef M Penninger; Sutada Lotinun; Roland Baron; Sankar Ghosh; Jae-Hyuck Shim
Journal:  J Exp Med       Date:  2015-07-20       Impact factor: 14.307

10.  Juvenile Paget's Disease From Heterozygous Mutation of SP7 Encoding Osterix (Specificity Protein 7, Transcription Factor SP7).

Authors:  Michael P Whyte; Philippe M Campeau; William H McAlister; G David Roodman; Nori Kurihara; Angela Nenninger; Shenghui Duan; Gary S Gottesman; Vinieth N Bijanki; Homer Sedighi; Deborah J Veis; Steven Mumm
Journal:  Bone       Date:  2020-04-13       Impact factor: 4.398

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