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Proteomic analysis of ERK1/2-mediated human sickle red blood cell membrane protein phosphorylation

机译:ERK1 / 2介导的镰刀红细胞膜蛋白磷酸化的蛋白质组学分析

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Background In sickle cell disease (SCD), the mitogen-activated protein kinase (MAPK) ERK1/2 is constitutively active and can be inducible by agonist-stimulation only in sickle but not in normal human red blood cells (RBCs). ERK1/2 is involved in activation of ICAM-4-mediated sickle RBC adhesion to the endothelium. However, other effects of the ERK1/2 activation in sickle RBCs leading to the complex SCD pathophysiology, such as alteration of RBC hemorheology are unknown. Results To further characterize global ERK1/2-induced changes in membrane protein phosphorylation within human RBCs, a label-free quantitative phosphoproteomic analysis was applied to sickle and normal RBC membrane ghosts pre-treated with U0126, a specific inhibitor of MEK1/2, the upstream kinase of ERK1/2, in the presence or absence of recombinant active ERK2. Across eight unique treatment groups, 375 phosphopeptides from 155 phosphoproteins were quantified with an average technical coefficient of variation in peak intensity of 19.8%. Sickle RBC treatment with U0126 decreased thirty-six phosphopeptides from twenty-one phosphoproteins involved in regulation of not only RBC shape, flexibility, cell morphology maintenance and adhesion, but also glucose and glutamate transport, cAMP production, degradation of misfolded proteins and receptor ubiquitination. Glycophorin A was the most affected protein in sickle RBCs by this ERK1/2 pathway, which contained 12 unique phosphorylated peptides, suggesting that in addition to its effect on sickle RBC adhesion, increased glycophorin A phosphorylation via the ERK1/2 pathway may also affect glycophorin A interactions with band 3, which could result in decreases in both anion transport by band 3 and band 3 trafficking. The abundance of twelve of the thirty-six phosphopeptides were subsequently increased in normal RBCs co-incubated with recombinant ERK2 and therefore represent specific MEK1/2 phospho-inhibitory targets mediated via ERK2. Conclusions These findings expand upon the current model for the involvement of ERK1/2 signaling in RBCs. These findings also identify additional protein targets of this pathway other than the RBC adhesion molecule ICAM-4 and enhance the understanding of the mechanism of small molecule inhibitors of MEK/1/2/ERK1/2, which could be effective in ameliorating RBC hemorheology and adhesion, the hallmarks of SCD.
机译:背景技术在镰状细胞疾病(SCD)中,促分裂原激活的蛋白激酶(MAPK)ERK1 / 2具有组成型活性,并且仅在镰状细胞中可以通过激动剂刺激来诱导,而在正常人红细胞(RBC)中则不能。 ERK1 / 2参与激活ICAM-4介导的镰状RBC与内皮的粘附。但是,镰状红细胞中ERK1 / 2激活的其他作用会导致复杂的SCD病理生理,例如RBC血液流变学改变,目前尚不清楚。结果为了进一步表征ERK1 / 2诱导的人类RBC膜蛋白磷酸化的整体变化,对无标记的定量磷酸化蛋白质组学分析应用于镰刀和正常RBC膜鬼影,U0126是MEK1 / 2的特异抑制剂,在有或没有重组活性ERK2的情况下ERK1 / 2的上游激酶。在八个独特的治疗组中,对来自155种磷蛋白的375种磷肽进行了定量,峰强度的平均技术变异系数为19.8%。用U0126进行镰刀状RBC处理可减少二十一种磷酸蛋白中的36种磷酸肽,这些蛋白不仅涉及RBC形状,柔韧性,细胞形态维持和粘附的调节,还涉及葡萄糖和谷氨酸的转运,cAMP的产生,错折叠蛋白的降解和受体泛素化。糖蛋白A是该RRK1 / 2途径中镰刀红细胞中受影响最严重的蛋白,它含有12种独特的磷酸化肽,这表明除对镰刀RBC粘附的影响外,通过ERK1 / 2途径增加的糖蛋白A磷酸化也可能影响糖蛋白与谱带3的相互作用可能导致谱带3和谱带3的阴离子运输减少。随后在与重组ERK2共孵育的正常RBC中增加了36种磷酸肽中的12种的丰度,因此代表了通过ERK2介导的特异性MEK1 / 2磷酸抑制靶标。结论这些发现扩展了RRKs中ERK1 / 2信号传导的当前模型。这些发现还确定了除RBC粘附分子ICAM-4之外该途径的其他蛋白质靶标,并增强了对MEK / 1/2 / ERK1 / 2小分子抑制剂机制的理解,这可能对改善RBC血液流变学和附着力,SCD的标志。

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