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Commonality amid diversity:multi-study proteomic identification of conserved disease mechanisms in spinal muscular atrophy

机译:多样性中的共性:多研究蛋白质组学鉴定脊髓性肌萎缩中的保守疾病机制

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摘要

The neuromuscular disease spinal muscular atrophy (SMA) is a leading genetic cause of infant mortality, resulting from low levels of full-length survival motor neuron (SMN) protein. Despite having a good understanding of the underlying genetics of SMA, the molecular pathways downstream of SMN that regulate disease pathogenesis remain unclear. The identification of molecular perturbations downstream of SMN is required in order to fully understand the fundamental biological role(s) for SMN in cells and tissues of the body, as well as to develop a range of therapeutic targets for developing novel treatments for SMA. Recent developments in proteomic screening technologies have facilitated proteome-wide investigations of a range of SMA models and tissues, generating novel insights into disease mechanisms by highlighting conserved changes in a range of molecular pathways. Comparative analysis of distinct proteomic datasets reveals conserved changes in pathways converging on GAP43, GAPDH, NCAM, UBA1, LMNA, ANXA2 and COL6A3. Proteomic studies therefore represent a leading tool with which to dissect the molecular mechanisms of disease pathogenesis in SMA, serving to identify potentially attractive targets for the development of novel therapies.
机译:神经肌肉疾病脊髓性肌萎缩症(SMA)是婴儿死亡的主要原因,原因是全长生存运动神经元(SMN)蛋白水平低。尽管对SMA的基本遗传学有很好的了解,但SMN下游调节疾病发病机制的分子途径仍不清楚。为了充分了解SMN在人体细胞和组织中的基本生物学作用,并为开发针对SMA的新疗法制定一系列治疗靶标,需要鉴定SMN下游的分子扰动。蛋白质组学筛选技术的最新发展促进了对一系列SMA模型和组织的蛋白质组范围研究,并通过强调一系列分子途径中的保守变化,对疾病机制产生了新见解。对不同蛋白质组学数据集的比较分析揭示了在GAP43,GAPDH,NCAM,UBA1,LMNA,ANXA2和COL6A3上收敛的途径的保守变化。因此,蛋白质组学研究是剖析SMA中疾病发病机理的分子机制的主要工具,可用于确定开发新疗法的潜在有吸引力的靶标。

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