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Quantitative proteomic analysis reveals metabolic alterations, calcium dysregulation and increased expression of extracellular matrix proteins in laminin α2 chain-deficient muscle.

机译:定量蛋白质组学分析揭示了层粘连蛋白α2链缺陷肌肉中的代谢改变,钙失调和细胞外基质蛋白的表达增加。

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摘要

Congenital muscular dystrophy with laminin α2 chain-deficiency (MDC1A) is one of the most severe forms of muscular disease and is characterized by severe muscle weakness and delayed motor milestones. The genetic basis of MDC1A is well-known, yet the secondary mechanisms ultimately leading to muscle degeneration and subsequent connective tissue infiltration are not fully understood. In order to obtain new insights into the molecular mechanisms underlying MDC1A, we performed a comparative proteomic analysis of affected muscles (diaphragm and gastrocnemius) from laminin α2 chain-deficient dy3K/dy3K mice, using the multidimensional protein identification technology combined with tandem mass tags. Out of the around 700 identified proteins, 113 and 101 proteins, respectively, were differentially expressed in the diseased gastrocnemius and diaphragm muscles compared to normal muscles. A large portion of these proteins are involved in different metabolic processes, bind calcium or are expressed in the extracellular matrix. Our findings suggest that metabolic alterations and calcium dysregulation could be novel mechanisms that underlie MDC1A and might be targets that should be explored for therapy. Also, detailed knowledge of the composition of fibrotic tissue, rich in extracellular matrix proteins, in laminin α2 chain deficient muscle may help to design future anti-fibrotic treatment. All MS data have been deposited in the ProteomeXchange with identifier PXD000978 (http://proteomecentral.proteomexchange.org/dataset/PXD000978).
机译:具有层粘连蛋白α2链缺陷(MDC1A)的先天性肌营养不良症是最严重的一种肌肉疾病,其特征是严重的肌肉无力和运动障碍。 MDC1A的遗传基础是众所周知的,但最终导致肌肉变性和随后的结缔组织浸润的次级机制尚未完全清楚。为了获得对MDC1A潜在分子机制的新见解,我们使用了多维蛋白质识别技术结合串联质量标签,对层粘连蛋白α2链缺陷型dy3K / dy3K小鼠的受影响肌肉(dia肌和腓肠肌)进行了蛋白质组学比较分析。在患病的腓肠肌和gas肌中,与正常肌肉相比,在大约700种已鉴定的蛋白质中,分别有113和101种蛋白质差异表达。这些蛋白质的很大一部分参与不同的代谢过程,结合钙或在细胞外基质中表达。我们的研究结果表明,代谢改变和钙调节异常可能是MDC1A的新机制,可能是治疗应探索的靶标。同样,对层粘连蛋白α2链缺陷型肌肉中富含细胞外基质蛋白的纤维化组织组成的详细了解,可能有助于设计未来的抗纤维化治疗方法。所有MS数据均已存储在ProteomeXchange中,其标识符为PXD000978(http://proteomecentral.proteomexchange.org/dataset/PXD000978)。

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