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首页> 外文期刊>The journal of immunology >Cytoplasmic Linker Protein-170 Enhances Spreading and Phagocytosis in Activated Macrophages by Stabilizing Microtubules
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Cytoplasmic Linker Protein-170 Enhances Spreading and Phagocytosis in Activated Macrophages by Stabilizing Microtubules

机译:细胞质连接蛋白170通过稳定微管增强在激活的巨噬细胞中的扩散和吞噬作用。

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Activation of macrophages causes increased cell spreading, increased secretion of cytokines and matrix metalloproteinases, and enhanced phagocytosis. The intracellular mechanisms driving the up-regulation of these activities have not been completely clarified. We observe that classical activation of murine resident peritoneal or RAW 264.7 macrophages with a combination of IFN-γ and LPS induces an increase in stabilized cytoplasmic microtubules (MTs), measured with an anti-acetylated α-tubulin Ab. We examined the mechanism of this MT stabilization and find that macrophage activation causes redistribution of the MT plus-end tracking protein, cytoplasmic linker protein-170 (CLIP-170). CLIP-170 is localized at the distal plus-ends of MTs in resting macrophages, but accumulates along the length of MTs in IFN-γ/LPS-activated cells. A direct involvement of CLIP-170 in MT stabilization has not been thoroughly established. In this study, we show that expression of a mutant CLIP-170 chimeric protein (dominant-negative CLIP-170-GFP), lacking the MT-binding domain, prevents MT stabilization in activated RAW 264.7 macrophages. Furthermore, we find enhanced CLIP-170 association with MTs and MT stabilization by treating resting macrophages with okadaic acid, implicating the protein phosphatase 2A in CLIP-170 binding and MT stabilization in RAW 264.7 cells. Finally, we observed enhanced cell spreading and phagocytosis in both IFN-γ/LPS-activated and okadaic acid-treated resting RAW 264.7 cells, which are markedly reduced in activated cells expressing dominant-negative CLIP-170-GFP. These results identify CLIP-170 as a key regulator of MT stabilization and establish a prominent role for stabilized MTs in cell spreading and phagocytosis in activated macrophages.
机译:巨噬细胞的活化导致细胞扩散增加,细胞因子和基质金属蛋白酶的分泌增加以及吞噬作用增强。尚未完全阐明驱动这些活性上调的细胞内机制。我们观察到鼠常驻性腹膜或RAW 264.7巨噬细胞与IFN-γ和LPS的组合的经典激活,诱导了稳定的细胞质微管(MTs)的增加,用抗乙酰化的α-微管蛋白Ab测得。我们检查了这种MT稳定的机制,发现巨噬细胞激活导致MT末端跟踪蛋白胞质连接蛋白170(CLIP-170)的重新分布。 CLIP-170定位于静止巨噬细胞中MT的远端,但沿IFN-γ/ LPS激活细胞中MT的长度积累。 CLIP-170直接参与MT稳定化尚未完全建立。在这项研究中,我们表明缺少MT结合域的突变CLIP-170嵌合蛋白(占主导地位的阴性CLIP-170-GFP)的表达阻止了MT在激活的RAW 264.7巨噬细胞中的稳定。此外,我们发现通过用冈田酸处理静止的巨噬细胞,在CLIP-170结合和RAW 264.7细胞的MT稳定中牵涉蛋白质磷酸酶2A,增强了CLIP-170与MT和MT稳定的联系。最后,我们观察到在IFN-γ/ LPS活化和冈田酸处理的静息RAW 264.7细胞中细胞扩散和吞噬作用均增强,在表达显性负性CLIP-170-GFP的活化细胞中明显减少。这些结果确定CLIP-170是MT稳定的关键调节剂,并为稳定的MT在活化的巨噬细胞的细胞扩散和吞噬作用中发挥了重要作用。

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