School of Pharmacy and Bioengineering (PhaB), Keele University, Keele ST5 5BG, UK.
Wolfson Centre for Inherited Neuromuscular Disease, RJAH Orthopaedic Hospital, Oswestry SY10 7AG, UK.
Cells. 2022 Aug 23;11(17):2624. doi: 10.3390/cells11172624.
Most research to characterise the molecular consequences of spinal muscular atrophy (SMA) has focused on SMA I. Here, proteomic profiling of skin fibroblasts from severe (SMA I), intermediate (SMA II), and mild (SMA III) patients, alongside age-matched controls, was conducted using SWATH mass spectrometry analysis. Differentially expressed proteomic profiles showed limited overlap across each SMA type, and variability was greatest within SMA II fibroblasts, which was not explained by copy number. Despite limited proteomic overlap, enriched canonical pathways common to two of three SMA severities with at least one differentially expressed protein from the third included mTOR signalling, regulation of eIF2 and eIF4 signalling, and protein ubiquitination. Network expression clustering analysis identified protein profiles that may discriminate or correlate with SMA severity. From these clusters, the differential expression of PYGB (SMA I), RAB3B (SMA II), and IMP1 and STAT1 (SMA III) was verified by Western blot. All SMA fibroblasts were transfected with an SMN-enhanced construct, but only RAB3B expression in SMA II fibroblasts demonstrated an SMN-dependent response. The diverse proteomic profiles and pathways identified here pave the way for studies to determine their utility as biomarkers for patient stratification or monitoring treatment efficacy and for the identification of severity-specific treatments.
大多数研究都集中在脊髓性肌萎缩症 (SMA) 的分子后果上。在这里,使用 SWATH 质谱分析对严重型 (SMA I)、中间型 (SMA II) 和轻度型 (SMA III) 患者的皮肤成纤维细胞以及年龄匹配的对照进行了蛋白质组学分析。差异表达的蛋白质组学图谱显示,每种 SMA 类型之间的重叠有限,而 SMA II 成纤维细胞的变异性最大,这不能用拷贝数来解释。尽管蛋白质组学的重叠有限,但至少有一个第三型 SMA 中有差异表达的蛋白质的两个或三个严重程度都存在丰富的共同经典途径,包括 mTOR 信号、eIF2 和 eIF4 信号的调节以及蛋白质泛素化。网络表达聚类分析确定了可能区分或与 SMA 严重程度相关的蛋白质图谱。从这些聚类中,通过 Western blot 验证了 PYGB(SMA I)、RAB3B(SMA II)和 IMP1 和 STAT1(SMA III)的差异表达。所有 SMA 成纤维细胞都用 SMN 增强构建体转染,但只有 SMA II 成纤维细胞中的 RAB3B 表达表现出 SMN 依赖性反应。这里确定的多样化蛋白质组学图谱和途径为研究确定它们作为患者分层或监测治疗效果的生物标志物的效用以及鉴定特定于严重程度的治疗方法铺平了道路。