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2D-DIGE proteomic analysis of vastus lateralis from COPD patients with low and normal fat free mass index and healthy controls

机译:低和正常无脂肪质量指数以及健康对照组的COPD患者的股外侧肌的2D-DIGE蛋白质组学分析

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BackgroundChronic obstructive pulmonary disease (COPD) is associated with several extra-pulmonary effects of which skeletal muscle wasting is one of the most common and contributes to reduced quality of life, increased morbidity and mortality. The molecular mechanisms leading to muscle wasting are not fully understood. Proteomic analysis of human skeletal muscle is a useful approach for gaining insight into the molecular basis for normal and pathophysiological conditions. MethodsTo identify proteins involved in the process of muscle wasting in COPD, we searched differentially expressed proteins in the vastus lateralis of COPD patients with low fat free mass index (FFMI), as a surrogate of muscle mass (COPDL, n =?10) (FEV1 33?±?4.3% predicted, FFMI 15?±?0.2 Kg.m?2), in comparison to patients with COPD and normal FFMI (COPDN, n =?8) and a group of age, smoking history, and sex matched healthy controls (C, n =?9) using two-dimensional fluorescence difference in gel electrophoresis (2D-DIGE) technology, combined with mass spectrometry (MS). The effect of silencing DOT1L protein expression on markers of cell arrest was analyzed in skeletal muscle satellite cells (HSkMSCs) in vitro and assessed by qPCR and Western blotting. ResultsA subset of 7 proteins was differentially expressed in COPDL compared to both COPDN and C. We found an increased expression of proteins associated with muscle homeostasis and protection against oxidative stress, and a decreased expression of structural muscle proteins and proteins involved in myofibrillogenesis, cell proliferation, cell cycle arrest and energy production. Among these was a decreased expression of the histone methyltransferase DOT1L. In addition, silencing of the DOT1L gene in human skeletal muscle satellite cells in vitro was significantly related to up regulation of p21 WAF1/Cip1/CDKN1A, a marker of cell arrest and ageing. Conclusions2D-DIGE coupled with MS identified differences in the expression of several proteins in the wasted vastus lateralis that are relevant to the disease process. Down regulation of DOT1L in the vastus lateralis of COPDL patients may mediate the muscle wasting process through up regulation of markers of cell arrest and senescence.
机译:背景慢性阻塞性肺疾病(COPD)与几种肺外影响有关,骨骼肌消瘦是最常见的一种,并导致生活质量下降,发病率和死亡率增加。导致肌肉消瘦的分子机制尚不完全清楚。对人体骨骼肌进行蛋白质组学分析是了解正常和病理生理状况的分子基础的有用方法。方法为鉴定参与COPD肌肉消瘦过程的蛋白质,我们在低脂肪无脂肪质量指数(FFMI)的COPD患者的外侧阔肌中搜索差异表达的蛋白质,以替代肌肉质量(COPD L, n =?10)(FEV 1 预测为33?±?4.3%,FFMI 15?±?0.2 Kg.m ?2 )使用凝胶中的二维荧光差异,COPD和正常FFMI(COPD n =?8)以及年龄,吸烟史和性别匹配的健康对照组(C,n =?9)电泳(2D-DIGE)技术,结合质谱(MS)。在骨骼肌卫星细胞(HSkMSCs)中分析了沉默DOT1L蛋白表达对细胞停滞标志物的影响,并通过qPCR和Western印迹进行了评估。结果与COPD N 和C相比,COPD L 中有7种蛋白质的差异表达。我们发现与肌肉动态平衡有关的蛋白质表达增加,并且对氧化应激具有保护作用,结构肌蛋白和参与肌原纤维形成,细胞增殖,细胞周期阻滞和能量产生的蛋白的表达下降。其中包括组蛋白甲基转移酶DOT1L的表达降低。此外,人骨骼肌卫星细胞中DOT1L基因的沉默与p21 WAF1 / Cip1 / CDKN1A的上调密切相关,p21 WAF1 / Cip1 / CDKN1A是细胞停滞和衰老的标志。结论2D-DIGE结合MS可以识别出与疾病过程相关的浪费的外侧阔肌中几种蛋白质表达的差异。 COPD L 患者外侧外侧中DOT1L的下调可能通过上调细胞停滞和衰老标志物来介导肌肉消瘦过程。

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