Medicine Genetics Group, Vall d'Hebron Research Institute (VHIR), Universitat Autònoma de Barcelona (UAB), 08035 Barcelona, Spain.
Department of Clinical and Molecular Genetics, Hospital Universitari Vall d'Hebron, Universitat Autònoma de Barcelona (UAB), 08035 Barcelona, Spain.
Int J Mol Sci. 2022 Jul 27;23(15):8289. doi: 10.3390/ijms23158289.
Spinal muscular atrophy (SMA) is a severe neuromuscular disorder caused by biallelic loss or pathogenic variants in the SMN1 gene. Copy number and modifier intragenic variants in SMN2, an almost identical paralog gene of SMN1, are known to influence the amount of complete SMN proteins. Therefore, SMN2 is considered the main phenotypic modifier of SMA, although genotype−phenotype correlation is not absolute. We present eleven unrelated SMA patients with milder phenotypes carrying the c.859G>C-positive modifier variant in SMN2. All were studied by a specific NGS method to allow a deep characterization of the entire SMN region. Analysis of two homozygous cases for the variant allowed us to identify a specific haplotype, Smn2-859C.1, in association with c.859G>C. Two other cases with the c.859G>C variant in their two SMN2 copies showed a second haplotype, Smn2-859C.2, in cis with Smn2-859C.1, assembling a more complex allele. We also identified a previously unreported variant in intron 2a exclusively linked to the Smn2-859C.1 haplotype (c.154-1141G>A), further suggesting that this region has been ancestrally conserved. The deep molecular characterization of SMN2 in our cohort highlights the importance of testing c.859G>C, as well as accurately assessing the SMN2 region in SMA patients to gain insight into the complex genotype−phenotype correlations and improve prognostic outcomes.
脊髓性肌萎缩症(SMA)是一种严重的神经肌肉疾病,由 SMN1 基因的双等位基因缺失或致病变异引起。SMN2 是 SMN1 几乎完全相同的基因,其基因内拷贝数和修饰变异被认为会影响完整 SMN 蛋白的数量。因此,SMN2 被认为是 SMA 的主要表型修饰因子,尽管基因型-表型相关性并非绝对。我们介绍了 11 例不相关的 SMA 患者,他们携带 SMN2 中的 c.859G>C 阳性修饰变异,表现出较轻的表型。所有患者均通过特定的 NGS 方法进行研究,以对整个 SMN 区域进行深入表征。对两个纯合病例的分析使我们能够鉴定出与 c.859G>C 相关的特定单倍型 Smn2-859C.1。另外两个具有两个 SMN2 拷贝 c.859G>C 变异的病例表现出第二个单倍型 Smn2-859C.2,与 Smn2-859C.1 顺式排列,构成了一个更复杂的等位基因。我们还在 2a 内含子中鉴定出一个以前未报道的变异,该变异仅与 Smn2-859C.1 单倍型相关(c.154-1141G>A),进一步表明该区域在遗传上是保守的。我们队列中对 SMN2 的深入分子特征强调了测试 c.859G>C 的重要性,以及在 SMA 患者中准确评估 SMN2 区域的重要性,以深入了解复杂的基因型-表型相关性并改善预后结果。