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一名患有轻度雷恩综合征变异型的老年男性因FAM20C基因的新型纯合突变导致低磷性骨软化症和骨硬化症。

Hypophosphatemic osteomalacia and bone sclerosis caused by a novel homozygous mutation of the FAM20C gene in an elderly man with a mild variant of Raine syndrome.

作者信息

Takeyari Shinji, Yamamoto Takehisa, Kinoshita Yuka, Fukumoto Seiji, Glorieux Francis H, Michigami Toshimi, Hasegawa Kosei, Kitaoka Taichi, Kubota Takuo, Imanishi Yasuo, Shimotsuji Tsunesuke, Ozono Keiichi

机构信息

Department of Pediatrics, Minoh City Hospital, Osaka 562-8562, Japan.

Department of Pediatrics, Minoh City Hospital, Osaka 562-8562, Japan.

出版信息

Bone. 2014 Oct;67:56-62. doi: 10.1016/j.bone.2014.06.026. Epub 2014 Jun 27.

Abstract

BACKGROUND

Hypophosphatemia and increased serum fibroblast growth factor 23 (FGF23) levels have been reported in young brothers with compound heterozygous mutations for the FAM20C gene; however, rickets was not observed in these cases. We report an adult case of Raine syndrome accompanying hypophosphatemic osteomalacia with a homozygous FAM20C mutation (R408W) associated with increased periosteal bone formation in the long bones and an increase in bone mineral density in the femoral neck.

CASE

The patient, a 61-year-old man, was born from a cousin-to-cousin marriage. A short stature and severe dental demineralization were reported at an elementary school age. Hypophosphatemia was noted inadvertently at 27years old, at which time he started to take an active vitamin D metabolite (alphacalcidol) and phosphate. He also manifested ossification of the posterior longitudinal ligament. On bone biopsy performed at the age of 41years, we found severe osteomalacia surrounding osteocytes, which appeared to be an advanced form of periosteocytic hypomineralized lesions compared to those reported in patients with X-linked hypophosphatemic rickets. Laboratory data at 61years of age revealed markedly increased serum intact-FGF23 levels, which were likely to be the cause of hypophosphatemia and the decreased level of 1,25(OH)2D. We recently identified a homozygous FAM20C mutation, which was R408W, in this patient. When expressed in HEK293 cells, the R408W mutant protein exhibited impaired kinase activity and secretion.

DISCUSSION

Our findings suggest that certain homozygous FAM20C mutations can cause FGF23-related hypophosphatemic osteomalacia and indicate the multiple roles of FAM20C in bone.

摘要

背景

据报道,患有FAM20C基因复合杂合突变的年轻兄弟出现了低磷血症和血清成纤维细胞生长因子23(FGF23)水平升高;然而,这些病例中未观察到佝偻病。我们报告一例成年雷恩综合征病例,伴有低磷性骨软化症,该患者存在FAM20C基因纯合突变(R408W),伴有长骨骨膜骨形成增加和股骨颈骨密度增加。

病例

患者为一名61岁男性,父母为近亲结婚。小学时就有身材矮小和严重牙齿脱矿的情况。27岁时无意中发现低磷血症,此时他开始服用活性维生素D代谢物(阿法骨化醇)和磷酸盐。他还表现出后纵韧带骨化。在41岁时进行的骨活检中,我们发现骨细胞周围有严重的骨软化,与X连锁低磷性佝偻病患者报告的情况相比,这似乎是骨细胞周围矿化不足病变的晚期形式。61岁时的实验室数据显示血清完整FGF23水平显著升高,这可能是低磷血症和1,25(OH)2D水平降低的原因。我们最近在该患者中发现了一个纯合的FAM20C突变,即R408W。当在HEK293细胞中表达时,R408W突变蛋白的激酶活性和分泌受损。

讨论

我们的研究结果表明,某些FAM20C基因纯合突变可导致FGF23相关的低磷性骨软化症,并提示FAM20C在骨骼中的多种作用。

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