Intracellular localisation and extracellular release of Y RNA and Y RNA binding proteins

Tom A. P. Driedonks, Sarah Ressel, Thi Tran Ngoc Minh, Amy H. Buck, Esther N. M. Nolte-‘t Hoen
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Abstract

Cells can communicate via the release and uptake of extracellular vesicles (EVs), which are nano-sized membrane vesicles that can transfer protein and RNA cargo between cells. EVs contain microRNAs and various other types of non-coding RNA, of which Y RNA is among the most abundant types. Studies on how RNAs and their binding proteins are sorted into EVs have mainly focused on comparing intracellular (cytoplasmic) levels of these RNAs to the extracellular levels in EVs. Besides overall transcriptional levels that may regulate sorting of RNAs into EVs, the process may also be driven by local intracellular changes in RNA/RBP concentrations. Changes in extracellular Y RNA have been linked to cancer and cardiovascular diseases. Although the loading of RNA cargo into EVs is generally thought to be influenced by cellular stimuli and regulated by RNA binding proteins (RBP), little is known about Y RNA shuttling into EVs. We previously reported that immune stimulation alters the levels of Y RNA in EVs independently of cytosolic Y RNA levels. This suggests that Y RNA binding proteins, and/or changes in the local Y RNA concentration at EV biogenesis sites, may affect Y RNA incorporation into EVs. Here, we investigated the subcellular distribution of Y RNA and Y RNA binding proteins in activated and non-activated THP1 macrophages. We demonstrate that Y RNA and its main binding protein Ro60 abundantly co-fractionate in organelles involved in EV biogenesis and in EVs. Cellular activation led to an increase in Y RNA concentration at EV biogenesis sites and this correlated with increased EV-associated levels of Y RNA and Ro60. These results suggest that Y RNA incorporation into EVs may be controlled by local intracellular changes in the concentration of Y RNA and their protein binding partners.

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Y RNA 和 Y RNA 结合蛋白的胞内定位和胞外释放
细胞可以通过释放和吸收胞外囊泡(EVs)进行交流,EVs 是一种纳米大小的膜囊泡,可以在细胞之间传输蛋白质和 RNA 货物。EVs含有microRNA和各种其他类型的非编码RNA,其中Y RNA是最丰富的类型之一。关于 RNA 及其结合蛋白如何被分拣到 EVs 中的研究主要集中在比较这些 RNA 在 EVs 中的细胞内(细胞质)水平和细胞外水平。除了整体转录水平可能调控 RNA 向 EVs 的分拣外,这一过程还可能受到 RNA/RBP 浓度的局部细胞内变化的驱动。细胞外 Y RNA 的变化与癌症和心血管疾病有关。虽然人们普遍认为 RNA 货物进入 EVs 会受到细胞刺激的影响,并受 RNA 结合蛋白(RBP)的调控,但对 Y RNA 穿梭进入 EVs 的情况却知之甚少。我们以前曾报道过,免疫刺激会改变 EVs 中的 Y RNA 水平,而不受细胞膜 Y RNA 水平的影响。这表明,Y RNA 结合蛋白和/或 EV 生物发生位点局部 Y RNA 浓度的变化可能会影响 Y RNA 在 EV 中的结合。在这里,我们研究了活化和非活化的 THP1 巨噬细胞中 Y RNA 和 Y RNA 结合蛋白的亚细胞分布。我们发现,Y RNA及其主要结合蛋白Ro60在参与EV生物生成的细胞器和EV中大量共分馏。细胞活化导致 EV 生物发生部位的 Y RNA 浓度增加,这与 EV 相关的 Y RNA 和 Ro60 水平增加相关。这些结果表明,Y RNA与EV的结合可能受控于细胞内Y RNA及其蛋白结合伙伴浓度的局部变化。
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