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Methods to Study Mrp4-containing Macromolecular Complexes in the Regulation of Fibroblast Migration

机译:研究含Mrp4的高分子复合物在成纤维细胞迁移调控中的方法

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摘要

Multidrug resistance protein 4 (MRP4) is a member of the ATP-binding cassette family of membrane transporters and is an endogenous efflux transporter of cyclic nucleotides. By modulating intracellular cyclic nucleotide concentration, MRP4 can regulate multiple cyclic nucleotide-dependent cellular events including cell migration. Previously, we demonstrated that in the absence of MRP4, fibroblast cells contain higher levels of intracellular cyclic nucleotides and can migrate faster. To understand the underlying mechanisms of this finding, we adopted a direct yet multifaceted approach. First, we isolated potential interacting protein complexes of MRP4 from a MRP4 over-expression cell system using immunoprecipitation followed by mass-spectrometry. After identifying unique proteins in the MRP4 interactome, we utilized Ingenuity Pathway Analysis (IPA) to explore the role of these protein-protein interactions in the context of signal transduction. We elucidated the potential role of the MRP4 protein complex in cell migration and identified F-actin as a major mediator of the effect of MRP4 on cell migration. This study also emphasized the role of cAMP and cGMP as key players in the migratory phenomena. Using high-content microscopy, we performed cell-migration assays and observed that the effect of MRP4 on fibroblast migration is completely abolished by disruption of the actin cytoskeleton or inhibition of cAMP-dependent kinase A (PKA). To visualize signaling modulations in a migrating cell in real time, we utilized a FRET-based sensor for measuring PKA activity and found, the presence of more polarized PKA activity near the leading edge of migrating Mrp4-/- fibroblast, compared to Mrp4+/+fibroblasts. This in turn increased cortical actin formation and augmented the process of migration. Our approach enables identification of the proteins acting downstream to MRP4 and provides us with an overview of the mechanism involved in MRP4-dependent regulation of fibroblast migration.
机译:多药抗性蛋白4(MRP4)是膜转运蛋白ATP结合盒家族的成员,并且是环核苷酸的内源性外排转运蛋白。通过调节细胞内环核苷酸的浓度,MRP4可以调节多种依赖环核苷酸的细胞事件,包括细胞迁移。以前,我们证明了在没有MRP4的情况下,成纤维细胞含有较高水平的细胞内环状核苷酸,并且迁移速度更快。为了理解这一发现的潜在机制,我们采用了直接但多方面的方法。首先,我们使用免疫沉淀和质谱技术从MRP4过表达细胞系统中分离了MRP4的潜在相互作用蛋白复合物。在MRP4相互作用组中鉴定出独特的蛋白质后,我们利用创造力路径分析(IPA)探索了这些蛋白质-蛋白质相互作用在信号转导中的作用。我们阐明了MRP4蛋白复合物在细胞迁移中的潜在作用,并确定了F-肌动蛋白是MRP4对细胞迁移影响的主要介质。这项研究还强调了cAMP和cGMP在迁移现象中的关键作用。使用高含量显微镜,我们进行了细胞迁移分析,并观察到肌动蛋白细胞骨架的破坏或cAMP依赖性激酶A(PKA)的抑制作用完全消除了MRP4对成纤维细胞迁移的影响。为了实时可视化迁移细胞中的信号传导调制,我们利用基于FRET的传感器测量PKA活性,发现在迁移的Mrp4 -/-的前沿附近存在更多极化的PKA活性。与Mrp4 + / + 成纤维细胞相比。反过来,这增加了皮质肌动蛋白的形成并增加了迁移过程。我们的方法能够鉴定在MRP4下游起作用的蛋白质,并为我们提供了与MRP4依赖性成纤维细胞迁移调控有关的机制的概述。

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