Identification of <scp> <i>ENPP1</i> </scp> haploinsufficiency in patients with diffuse idiopathic skeletal hyperostosis and early‐onset osteoporosis

低磷血症性佝偻病 佝偻病 复合杂合度 苯丙氨酸 骨质增生 医学 弥漫性特发性骨骼增生症 身材矮小 成骨不全 软骨发育不全 内科学 桑格测序 骨软骨发育不良 骨骼疾病 骨质疏松症 内分泌学 病理
作者
Hajime Kato,Anenya J. Ansh,Ethan R. Lester,Yuka Kinoshita,Naoko Hidaka,Yoshitomo Hoshino,Minae Koga,Yuki Taniguchi,Taisuke Uchida,Hideki Yamaguchi,Yo Niida,Masamitsu Nakazato,Masaomi Nangaku,Noriko Makita,Toshinari Takamura,Taku Saito,Demetrios T. Braddock,Nobuaki Ito
出处
期刊:Journal of Bone and Mineral Research [Wiley]
标识
DOI:10.1002/jbmr.4550
摘要

Homozygous ENPP1 mutations are associated with autosomal recessive hypophosphatemic rickets type 2 (ARHR2), severe ossification of the spinal ligaments, and generalized arterial calcification of infancy type 1. There are a limited number of reports on phenotypes associated with heterozygous ENPP1 mutations. Here, we report a series of three probands and their families with heterozygous and compound heterozygous ENPP1 mutations. The first case (case 1) was a 47-year-old male, diagnosed with early-onset osteoporosis and low-normal serum phosphate levels, which invoked suspicion for hypophosphatemic rickets. The second and third cases were 77- and 54-year-old females who both presented with severe spinal ligament ossification and the presumptive diagnosis of diffuse idiopathic skeletal hyperostosis (DISH). Upon workup, fibroblast growth factor 23 (FGF23) was noted to be relatively high in case 2 and serum phosphorous was low-normal in case 3, and the diagnoses of X-linked hypophosphatemic rickets (XLH) and ARHR2 were considered. Genetic testing for genes related to congenital hypophosphatemic rickets was therefore performed, revealing heterozygous ENPP1 variants in cases 1 and 2 (case 1, c.536A>G, p.Asn179Ser; case 2, c.1352A>G, p.Tyr451Cys) and compound heterozygous ENPP1 variants in case 3 constituting the same variants present in cases 1 and 2 (c.536A>G, p.Asn179Ser and c.1352A>G, p.Tyr451Cys). Several in silico tools predicted the two variants to be pathogeneic, a finding confirmed by in vitro biochemical analysis demonstrating that the p.Asn179Ser and p.Tyr451Cys ENPP1 variants possessed a catalytic velocity of 45% and 30% compared with that of wild-type ENPP1, respectively. Both variants were therefore categorized as pathogenic loss-of-function mutations. Our findings suggest that ENPP1 mutational status should be evaluated in patients presenting with the diagnosis of idiopathic DISH, ossification of the posterior longitudinal ligament (OPLL), and early-onset osteoporosis. © 2022 American Society for Bone and Mineral Research (ASBMR).

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