Lisandra E de Castro Brás, Kristine Y Deleon, Yonggang Ma, Qiuxia Dai, Kevin Hakala, Susan T Weintraub, Merry L Lindsey
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引用次数: 6
摘要
心肌梗死(MI)后,基质金属蛋白酶-9 (MMP-9)水平升高,MMP-9缺失可改善心肌梗死后左心室(LV)重构。我们在这里提供了一份使用分离和质谱为基础的蛋白质组学对野生型(WT)和MMP-9缺失小鼠进行血浆分析的技术报告。雄性WT和MMP-9缺失小鼠(4-8月龄;N = 3/基因型)。于心肌梗死前第0天和心肌梗死后第1天采集血浆。对血浆蛋白进行分离,用1- d SDS-PAGE分离分子量最低(分数1)和分子量最高(分数12)的蛋白,用胰蛋白酶凝胶消化,在Orbitrap Velos上用HPLC-ESI-MS/MS分析。我们尝试了五种不同的分离方案,最终找到了一种优化方案,使我们能够识别100多种蛋白质。两种基因型患者心肌梗死后血清淀粉样蛋白A均显著升高,而α -2巨球蛋白仅在零样本中升高。在分数12中,仅在心肌梗死后观察到细胞外基质蛋白。有趣的是,MMP-9的底物纤维连接蛋白-1在MMP-9缺失小鼠心肌梗死后的第0天和第1天都被鉴定出来,但只在WT小鼠心肌梗死后被鉴定出来。总之,血浆分离提供了一种改进的无消耗方法来评估心肌梗死后的血浆变化。
Plasma fractionation enriches post-myocardial infarction samples prior to proteomics analysis.
Following myocardial infarction (MI), matrix metalloproteinase-9 (MMP-9) levels increase, and MMP-9 deletion improves post-MI remodeling of the left ventricle (LV). We provide here a technical report on plasma-analysis from wild type (WT) and MMP-9 null mice using fractionation and mass-spectrometry-based proteomics. MI was induced by coronary artery ligation in male WT and MMP-9 null mice (4-8 months old; n = 3/genotype). Plasma was collected on days 0 (pre-) and 1 post-MI. Plasma proteins were fractionated and proteins in the lowest (fraction 1) and highest (fraction 12) molecular weight fractions were separated by 1-D SDS-PAGE, digested in-gel with trypsin and analyzed by HPLC-ESI-MS/MS on an Orbitrap Velos. We tried five different fractionation protocols, before reaching an optimized protocol that allowed us to identify over 100 proteins. Serum amyloid A substantially increased post-MI in both genotypes, while alpha-2 macroglobulin increased only in the null samples. In fraction 12, extracellular matrix proteins were observed only post-MI. Interestingly, fibronectin-1, a substrate of MMP-9, was identified at both day 0 and day 1 post-MI in the MMP-9 null mice but was only identified post-MI in the WT mice. In conclusion, plasma fractionation offers an improved depletion-free method to evaluate plasma changes following MI.