Ak Bilgesu, Akısü Mete, Durmaz Asude, Yalaz Mehmet, Terek Demet, Sönmezler Ece, Oktay Yavuz, Akın Haluk, Aykut Ayça
Department of Medical Genetics, Ege University Hospital, Izmir, Turkey.
Department of Neonatology, Ege University Hospital, Izmir, Turkey.
Bone. 2025 Aug;197:117511. doi: 10.1016/j.bone.2025.117511. Epub 2025 May 9.
Short rib polydactyly syndrome (SRPS), with or without polydactyly, also known as Verma-Naumoff/Saldino-Noonan syndrome, is a type of skeletal ciliopathy. Initially, variants in the IFT80 gene were implicated; however, approximately half of the SRPS cases are associated with variants in the DYNC2H1 gene. Additionally, digenic variants involving DYNC2H1 and NEK1 can contribute to the syndrome.
This case report describes a male patient presenting with characteristic SRPS features, including a constricted thorax and shortened limbs. Exome sequencing was performed to identify causative variants, followed by functional analyses to assess the pathogenicity of the identified variants, including a synonymous variant.
Exome sequencing identified compound heterozygous variants in the DYNC2H1 gene: a novel missense variant c.6439G>T p.(Asp2147Tyr) and a synonymous variant c.6477G>A p.(Gln2159=). Functional analyses confirmed that the synonymous variant triggers nonsense-mediated decay of the affected allele.
This study expands the spectrum of DYNC2H1 variants associated with SRPS and emphasizes the importance of functional analyses in genetic diagnostics. Demonstrating pathogenicity for a synonymous variant highlights the necessity for comprehensive variant assessments to improve diagnostic accuracy and enable early intervention. These findings have significant implications for molecular diagnostics and personalized therapy strategies in skeletal ciliopathies.
短肋多指综合征(SRPS),无论有无多指,也称为韦尔马-瑙莫夫/萨尔迪诺-努南综合征,是一种骨骼纤毛病。最初,IFT80基因的变异被认为与之有关;然而,大约一半的SRPS病例与DYNC2H1基因的变异有关。此外,涉及DYNC2H1和NEK1的双基因变异也可能导致该综合征。
本病例报告描述了一名具有典型SRPS特征的男性患者,包括胸廓狭窄和四肢短小。进行外显子组测序以鉴定致病变异,随后进行功能分析以评估所鉴定变异(包括一个同义变异)的致病性。
外显子组测序在DYNC2H1基因中鉴定出复合杂合变异:一个新的错义变异c.6439G>T p.(Asp2147Tyr)和一个同义变异c.6477G>A p.(Gln2159=)。功能分析证实该同义变异触发了受影响等位基因的无义介导衰变。
本研究扩展了与SRPS相关的DYNC2H1变异谱,并强调了功能分析在基因诊断中的重要性。证明一个同义变异具有致病性凸显了进行全面变异评估以提高诊断准确性并实现早期干预的必要性。这些发现对骨骼纤毛病的分子诊断和个性化治疗策略具有重要意义。