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鉴定能够与不同类型 RNA 相互作用的外泌体中的 RNA 结合蛋白:RBP 促进 RNA 进入外泌体的转运。

Identification of RNA-binding proteins in exosomes capable of interacting with different types of RNA: RBP-facilitated transport of RNAs into exosomes.

机构信息

Department of Rheumatology and Inflammation Research, Sahlgrenska Academy, University of Gothenburg, Guldhedsgatan, Gothenburg, Sweden.

Department of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg, Sweden.

出版信息

PLoS One. 2018 Apr 24;13(4):e0195969. doi: 10.1371/journal.pone.0195969. eCollection 2018.

Abstract

The RNA that is packaged into exosomes is termed as exosomal-shuttle RNA (esRNA); however, the players, which take this subset of RNA (esRNA) into exosomes, remain largely unknown. We hypothesized that RNA binding proteins (RBPs) could serve as key players in this mechanism, by making complexes with RNAs and transporting them into exosomes during the biosynthesis of exosomes. Here, we demonstrate the presence of 30 RBPs in exosomes that were shown to form RNA-RBP complexes with both cellular RNA and exosomal-RNA species. To assess the involvement of these RBPs in RNA-transfer into exosomes, the gene transcripts encoding six of the proteins identified in exosomes (HSP90AB1, XPO5, hnRNPH1, hnRNPM, hnRNPA2B1, and MVP) were silenced by siRNA and subsequent effect on esRNA was assessed. A significant reduction of total esRNA was observed by post-transcriptional silencing of MVP, compared to other RBPs. Furthermore, to confirm the binding of MVP with esRNA, a biotinylated-MVP was transiently expressed in HEK293F cells. Higher levels of esRNA were recovered from MVP that was eluted from exosomes of transfected cells, as compared to those of non-transfected cells. Our data indicate that these RBPs could end up in exosomes together with RNA molecules in the form of RNA-ribonucleoprotein complexes, which could be important for the transport of RNAs into exosomes and the maintenance of RNAs inside exosomes. This type of maintenance may favor the shuttling of RNAs from exosomes to recipient cells in the form of stable complexes.

摘要

被包裹在 exosomes 中的 RNA 被称为外泌体穿梭 RNA(esRNA);然而,将这部分 RNA(esRNA)纳入 exosomes 的参与者在很大程度上仍不清楚。我们假设 RNA 结合蛋白(RBPs)可以作为该机制的关键参与者,通过与 RNA 形成复合物并在 exosomes 的生物合成过程中将其运输到 exosomes 中。在这里,我们证明了 30 种 RBPs 存在于 exosomes 中,这些 RBPs 被证明与细胞 RNA 和 exosomal-RNA 物种形成 RNA-RBP 复合物。为了评估这些 RBPs 在 RNA 转移到 exosomes 中的作用,通过 siRNA 沉默了在 exosomes 中鉴定出的六种蛋白质(HSP90AB1、XPO5、hnRNPH1、hnRNPM、hnRNPA2B1 和 MVP)的基因转录本,并评估了随后对 esRNA 的影响。与其他 RBPs 相比,通过 MVP 的转录后沉默观察到总 esRNA 的显著减少。此外,为了确认 MVP 与 esRNA 的结合,在 HEK293F 细胞中瞬时表达了生物素化的 MVP。与非转染细胞相比,从转染细胞的 exosomes 洗脱的 MVP 中回收了更高水平的 esRNA。我们的数据表明,这些 RBPs 可以与 RNA 分子一起以 RNA-核糖核蛋白复合物的形式进入 exosomes,这对于 RNA 进入 exosomes的运输和 exosomes 内 RNA 的维持可能很重要。这种类型的维持可能有利于以稳定复合物的形式将 RNA 从 exosomes 运送到受体细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43bb/5918169/62c382d99e4f/pone.0195969.g001.jpg

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