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Identification of dynamic changes in proteins associated with the cellular cytoskeleton after exposure to okadaic acid

机译:鉴定与冈田酸接触后与细胞骨架有关的蛋白质的动态变化

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摘要

Exposure of cells to the diarrhetic shellfish poison, okadaic acid, leads to a dramatic reorganization of cytoskeletal architecture and loss of cell-cell contact. When cells are exposed to high concentrations of okadaic acid (100-500 nM), the morphological rearrangement is followed by apoptotic cell death. Okadaic acid inhibits the broad acting Ser/Thr protein phosphatases 1 and 2A, which results in hyperphosphorylation of a large number of proteins. Some of these hyperphosphorylated proteins are most likely key players in the reorganization of the cell morphology induced by okadaic acid. We wanted to identify these phosphoproteins and searched for them in the cellular lipid rafts, which have been found to contain proteins that regulate cytoskeletal dynamics and cell adhesion. By using stable isotope labeling by amino acids in cell culture cells treated with okadaic acid (400 nM) could be combined with control cells before the isolation of lipid rafts. Protein phosphorylation events and translocations induced by okadaic acid were identified by mass spectrometry. Okadaic acid was shown to regulate the phosphorylation status and location of proteins associated with the actin cytoskeleton, microtubules and cell adhesion structures. A large number of these okadaic acid-regulated proteins have previously also been shown to be similarly regulated prior to cell proliferation and migration. Our results suggest that okadaic acid activates general cell signaling pathways that induce breakdown of the cortical actin cytoskeleton and cell detachment.
机译:细胞暴露于腹泻性贝类毒素冈田酸会导致细胞骨架结构的显着重组,并失去细胞间的接触。当细胞暴露于高浓度的冈田酸(100-500 nM)时,形态重排后,凋亡细胞死亡。冈田酸抑制作用广泛的Ser / Thr蛋白磷酸酶1和2A,从而导致大量蛋白过度磷酸化。这些高磷酸化蛋白中的某些最有可能是冈田酸诱导的细胞形态重组的关键因素。我们想要鉴定这些磷蛋白并在细胞脂质筏中搜索它们,这些筏中已发现这些蛋白调节细胞骨架动力学和细胞粘附。通过在细胞培养物中使用氨基酸进行稳定的同位素标记,用冈田酸(400 nM)处理的细胞可以在分离脂筏之前与对照细胞合并。通过质谱鉴定冈田酸诱导的蛋白质磷酸化事件和易位。冈田酸显示出调节肌动蛋白细胞骨架,微管和细胞粘附结构相关蛋白的磷酸化状态和位置。先前也已显示大量这些冈田酸调节的蛋白质在细胞增殖和迁移之前受到类似的调节。我们的结果表明,冈田酸激活了诱导皮质肌动蛋白细胞骨架分解和细胞脱离的一般细胞信号通路。

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