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Characterization of mRNA-Cytoskeleton Interactions In Situ Using FMTRIP and Proximity Ligation

机译:使用FMTRIP和邻近结扎法原位检测mRNA与细胞骨架的相互作用

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摘要

Many studies have demonstrated an association between the cytoskeleton and mRNA, as well as the asymmetric distribution of mRNA granules within the cell in response to various signaling events. It is likely that the extensive cytoskeletal network directs mRNA transport and localization, with different cytoskeletal elements having their own specific roles. In order to understand the spatiotemporal changes in the interactions between the mRNA and the cytoskeleton as a response to a stimulus, a technique that can visualize and quantify these changes across a population of cells while capturing cell-to-cell variations is required. Here, we demonstrate a method for imaging and quantifying mRNA-cytoskeleton interactions on a per cell basis with single-interaction sensitivity. Using a proximity ligation assay with flag-tagged multiply-labeled tetravalent RNA imaging probes (FMTRIP), we quantified interactions between mRNAs and β-tubulin, vimentin, or filamentous actin (F-actin) for two different mRNAs, poly(A) + and β-actin mRNA, in two different cell types, A549 cells and human dermal fibroblasts (HDF). We found that the mRNAs interacted predominantly with F-actin (>50% in HDF, >20% in A549 cells), compared to β-tubulin (<5%) and vimentin (11-13%). This likely reflects differences in mRNA management by the two cell types. We then quantified changes in these interactions in response to two perturbations, F-actin depolymerization and arsenite-induced oxidative stress, both of which alter either the cytoskeleton itself and mRNA localization. Both perturbations led to a decrease in poly(A) + mRNA interactions with F-actin and an increase in the interactions with microtubules, in a time dependent manner.
机译:许多研究表明,细胞骨架与mRNA之间的关联以及响应各种信号传递事件的细胞内mRNA颗粒的不对称分布。广泛的细胞骨架网络很可能指导mRNA的运输和定位,而不同的细胞骨架元素具有其自身的特定作用。为了理解作为对刺激的响应,mRNA与细胞骨架之间相互作用的时空变化,需要一种能够可视化并量化整个细胞群体中这些变化同时捕获细胞间变化的技术。在这里,我们展示了一种成像和量化在每个细胞基础上具有单相互作用敏感性的mRNA-细胞骨架相互作用的方法。使用带有标志标记的多标记四价RNA成像探针(FMTRIP)的邻近连接测定法,我们针对两种不同的mRNA,poly(A)+定量了mRNA与β-微管蛋白,波形蛋白或丝状肌动蛋白(F-actin)之间的相互作用。 β-actinmRNA和β-actinmRNA在两种不同的细胞类型中,即A549细胞和人皮肤成纤维细胞(HDF)。我们发现,与β-微管蛋白(<5%)和波形蛋白(11-13%)相比,mRNA主要与F-肌动蛋白相互作用(HDF中> 50%,A549细胞中> 20%)。这可能反映了两种细胞类型在mRNA管理上的差异。然后,我们对响应于两种干扰(F-肌动蛋白解聚和亚砷酸盐诱导的氧化应激)的这些相互作用的变化进行了定量,这两种变化均改变了细胞骨架本身和mRNA的定位。两种干扰都以时间依赖的方式导致与F-肌动蛋白的poly(A)+ mRNA相互作用的减少和与微管的相互作用的增加。

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