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A quantitative proteomic analysis of cofilin phosphorylation in myeloid cells and its modulation using the LIM kinase inhibitor Pyr1

机译:使用LIM激酶抑制剂Pyr1对髓样细胞中cofilin磷酸化的定量蛋白质组学分析及其调控

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摘要

LIM kinases are located at a strategic crossroad, downstream of several signaling pathways and upstream of effectors such as microtubules and the actin cytoskeleton. Cofilin is the only LIM kinases substrate that is well described to date, and its phosphorylation on serine 3 by LIM kinases controls cofilin actin-severing activity. Consequently, LIM kinases inhibition leads to actin cytoskeleton disorganization and blockade of cell motility, which makes this strategy attractive in anticancer treatments. LIMK has also been reported to be involved in pathways that are deregulated in hematologic malignancies, with little information regarding cofilin phosphorylation status. We have used proteomic approaches to investigate quantitatively and in detail the phosphorylation status of cofilin in myeloid tumor cell lines of murine and human origin. Our results show that under standard conditions, only a small fraction (10 to 30% depending on the cell line) of cofilin is phosphorylated (including serine 3 phosphorylation). In addition, after a pharmacological inhibition of LIM kinases, a residual cofilin phosphorylation is observed on serine 3. Interestingly, this 2D gel based proteomic study identified new phosphorylation sites on cofilin, such as threonine 63, tyrosine 82 and serine 108.
机译:LIM激酶位于重要的十字路口,在几个信号传导途径的下游,在效应物(例如微管和肌动蛋白细胞骨架)的上游。 Cofilin是迄今已被充分描述的唯一LIM激酶底物,LIM激酶在丝氨酸3上的磷酸化控制了cofilin肌动蛋白的切割活性。因此,LIM激酶抑制作用导致肌动蛋白细胞骨架紊乱和细胞运动受阻,这使该策略在抗癌治疗中具有吸引力。据报道,LIMK参与血液恶性肿瘤中失控的途径,有关cofilin磷酸化状态的信息很少。我们已经使用蛋白质组学的方法来定量和详细研究鼠和人类来源的髓样肿瘤细胞系中cofilin的磷酸化状态。我们的结果表明,在标准条件下,仅一小部分(取决于细胞系的10%至30%)的cofilin被磷酸化(包括丝氨酸3磷酸化)。此外,在LIM激酶的药理作用抑制后,在丝氨酸3上观察到残留的cofilin磷酸化。有趣的是,此基于2D凝胶的蛋白质组学研究在cofilin上鉴定了新的磷酸化位点,例如苏氨酸63,酪氨酸82和丝氨酸108。

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