Research Centre for Medical Genetics, Moscow, Russian Federation.
Research Centre for Medical Genetics, Moscow, Russian Federation.
Bone. 2024 Apr;181:117013. doi: 10.1016/j.bone.2024.117013. Epub 2024 Jan 19.
Pathogenic single nucleotide variants (SNVs) found in the COL2A1 gene are associated with a broad range of skeletal dysplasias due to their impact on the structure and function of the Col2a1 protein. However, the molecular mechanisms of some nucleotide variants detected during diagnostic testing remain unclear. The interpretation of missense and splicing variants caused by SNVs poses a significant challenge for clinicians. In this work, we analyzed 22 splicing variants in the COL2A1 gene which have been found in patients with COL2A1-associated skeletal dysplasias. Using a minigene system, we investigated the impact of these SNVs on splicing and gained insights into their molecular mechanisms and genotype-phenotype correlations for each patient. The results of our study are very useful for improving the accuracy of diagnosis and the management of patients with skeletal dysplasias caused by SNVs in the COL2A1 gene.
致病的单核苷酸变异(SNV)存在于 COL2A1 基因中,由于它们对 Col2a1 蛋白的结构和功能的影响,与广泛的骨骼发育不良有关。然而,在诊断测试中检测到的一些核苷酸变异的分子机制仍不清楚。SNV 引起的错义突变和剪接变异的解释对临床医生来说是一个重大挑战。在这项工作中,我们分析了 22 个 COL2A1 基因中的剪接变异,这些变异已在 COL2A1 相关骨骼发育不良的患者中发现。我们使用小基因系统研究了这些 SNV 对剪接的影响,并深入了解了它们的分子机制以及每个患者的基因型-表型相关性。我们研究的结果对于提高由 COL2A1 基因中的 SNV 引起的骨骼发育不良患者的诊断准确性和管理非常有用。