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蛋白质谱分析揭示了LMNA突变携带者的能量代谢和细胞骨架蛋白改变。

Protein profiling reveals energy metabolism and cytoskeletal protein alterations in LMNA mutation carriers.

作者信息

Magagnotti Cinzia, Bachi Angela, Zerbini Gianpaolo, Fattore Elena, Fermo Isabella, Riba Michela, Previtali Stefano C, Ferrari Maurizio, Andolfo Annapaola, Benedetti Sara

机构信息

ProMiFa, Protein Microsequencing Facility, Division of Cell Biology and Genetics, San Raffaele Scientific Institute, Milan, Italy.

出版信息

Biochim Biophys Acta. 2012 Jun;1822(6):970-9. doi: 10.1016/j.bbadis.2012.01.014. Epub 2012 Feb 3.

Abstract

Nuclear envelope-related muscular dystrophies, in particular those referred to as laminopathies, are relatively novel and unclear diseases, also considering the increasing number of mutations identified so far in genes of the nuclear envelope. As regard LMNA gene, only tentative relations between phenotype, type and localization of the mutations have been established in striated muscle diseases, while laminopathies affecting adipose tissue, peripheral nerves or progerioid syndromes could be linked to specific genetic variants. This study describes the biochemical phenotype of neuromuscular laminopathies in samples derived from LMNA mutant patients. Since it has been reported that nuclear alterations, due to LMNA defects, are present also in fibroblasts from Emery-Dreifuss muscular dystrophy and familial partial lipodystrophy patients, we analyzed 2D-maps of skin fibroblasts of patients carrying 12 different LMNA mutations spread along the entire gene. To recognize distinctive proteins underlying affected biochemical pathways, we compared them with fibroblasts from healthy controls and, more importantly, fibroblasts from patients with non-lamin related neuromuscular disorders. We found less abundance of cytoskeletal/structural proteins, confirming a dominant role for Lamin A/C in structural support of nuclear architecture. Interestingly, we also established significant changes in the expression of proteins involved in cellular energy production and oxidative stress response. To our knowledge, this is the first report where proteomics was applied to characterize ex-vivo cells from LMNA patients, suggesting that this may represent a new approach to better understand the molecular mechanisms of these rare diseases and facilitate the development of novel therapeutic treatments.

摘要

核膜相关的肌肉营养不良症,尤其是那些被称为核纤层蛋白病的疾病,是相对较新且尚不清楚的疾病,考虑到迄今为止在核膜基因中发现的突变数量不断增加,情况更是如此。关于LMNA基因,在横纹肌疾病中,仅在突变的表型、类型和定位之间建立了初步关系,而影响脂肪组织、周围神经或早老症综合征的核纤层蛋白病可能与特定的基因变异有关。本研究描述了来自LMNA突变患者样本的神经肌肉核纤层蛋白病的生化表型。由于有报道称,由于LMNA缺陷导致的核改变也存在于埃默里-德赖富斯肌营养不良症和家族性部分脂肪营养不良症患者的成纤维细胞中,我们分析了携带沿整个基因分布的12种不同LMNA突变的患者皮肤成纤维细胞的二维图谱。为了识别受影响的生化途径背后的独特蛋白质,我们将它们与健康对照者的成纤维细胞进行比较,更重要的是,与非核纤层相关神经肌肉疾病患者的成纤维细胞进行比较。我们发现细胞骨架/结构蛋白的丰度较低,证实了核纤层蛋白A/C在核结构的结构支持中起主导作用。有趣的是,我们还发现参与细胞能量产生和氧化应激反应的蛋白质表达有显著变化。据我们所知,这是第一份将蛋白质组学应用于表征LMNA患者体外细胞的报告,表明这可能代表了一种新方法,有助于更好地理解这些罕见疾病的分子机制,并促进新型治疗方法的开发。

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