Department of Molecular Medicine and Surgery and Center for Molecular Medicine, Karolinska Institutet, Stockholm, Sweden.
Department of Orthopaedics, "Aghia Sophia" Children's Hospital, Athens, Greece.
J Hum Genet. 2018 Aug;63(8):923-926. doi: 10.1038/s10038-018-0472-5. Epub 2018 Jun 8.
Mutations in the gene encoding plastin-3, PLS3, have recently been associated to severe primary osteoporosis. The molecular function of plastin-3 is not fully understood. Since PLS3 is located on the X chromosome, males are usually more severely affected than females. PLS3 mutations have thus far been reported in approximately 20 young patients with low bone mineral density (BMD). We describe an 8-year-old Greek boy with severe primary osteoporosis with multiple vertebral compression fractures and one low-energy long bone fracture. His clinical manifestations were consistent with osteogenesis imperfecta, including blue sclerae, joint hypermobility, low bone mineral density, kyphosis, bilateral conductive hearing loss, and mild dysmorphic features. The family history was negative for primary osteoporosis. COL1A1 and COL1A2 mutations were excluded by Sanger sequencing. However, Sanger sequencing of PLS3 led to the identification of a de novo frameshift deletion, NM_005032: c.1096_1100delAACTT, p.(Asn366Serfs*5), in exon 10 confirming the diagnosis of PLS3 osteoporosis. In conclusion, we describe a novel frameshift deletion in PLS3 causing severe primary osteoporosis in a boy. Our finding highlights the clinical overlap between type I collagen and PLS3-related skeletal fragility and underscores the importance of PLS3 screening in patients with multiple fractures to enable proper genetic counseling.
最近,编码 plastin-3(PLS3)的基因突变与严重的原发性骨质疏松症有关。PLS3 的分子功能尚未完全了解。由于 PLS3 位于 X 染色体上,男性通常比女性受影响更严重。迄今为止,已有大约 20 名骨密度低的年轻患者报告了 PLS3 突变。我们描述了一名 8 岁希腊男孩患有严重的原发性骨质疏松症,伴有多处椎体压缩性骨折和一处低能量长骨骨折。他的临床表现与成骨不全症一致,包括蓝色巩膜、关节过度活动、骨密度低、脊柱后凸、双侧传导性听力损失和轻度畸形特征。家族史无原发性骨质疏松症。通过 Sanger 测序排除了 COL1A1 和 COL1A2 突变。然而,PLS3 的 Sanger 测序导致鉴定出一个新的移码缺失,NM_005032:c.1096_1100delAACTT,p.(Asn366Serfs*5),在外显子 10 中,确诊为 PLS3 骨质疏松症。总之,我们描述了一种新的 PLS3 移码缺失导致男孩严重的原发性骨质疏松症。我们的发现强调了 I 型胶原蛋白和 PLS3 相关骨骼脆弱之间的临床重叠,并强调了在有多处骨折的患者中进行 PLS3 筛查以进行适当遗传咨询的重要性。