Department of Biological Sciences, Lehman College, City University of New York, 250 Bedford Park Boulevard West, Bronx, NY, 10468, USA.
Biology Doctoral Program, The Graduate School and University Center, City University of New York, 365 5th Avenue, New York, NY, 10016, USA.
Sci Rep. 2018 Feb 12;8(1):2823. doi: 10.1038/s41598-018-20421-1.
A range of cell types, including embryonic stem cells, neurons and astrocytes have been shown to release extracellular vesicles (EVs) containing molecular cargo. Across cell types, EVs facilitate transfer of mRNA, microRNA and proteins between cells. Here we describe the release kinetics and content of EVs from mouse retinal progenitor cells (mRPCs). Interestingly, mRPC derived EVs contain mRNA, miRNA and proteins associated with multipotency and retinal development. Transcripts enclosed in mRPC EVs, include the transcription factors Pax6, Hes1, and Sox2, a mitotic chromosome stabilizer Ki67, and the neural intermediate filaments Nestin and GFAP. Proteomic analysis of EV content revealed retinogenic growth factors and morphogen proteins. mRPC EVs were shown to transfer GFP mRNA between cell populations. Finally, analysis of EV mediated functional cargo delivery, using the Cre-loxP recombination system, revealed transfer and uptake of Cre+ EVs, which were then internalized by target mRPCs activating responder loxP GFP expression. In summary, the data supports a paradigm of EV genetic material encapsulation and transfer within RPC populations. RPC EV transfer may influence recipient RPC transcriptional and post-transcriptional regulation, representing a novel mechanism of differentiation and fate determination during retinal development.
一系列的细胞类型,包括胚胎干细胞、神经元和星形胶质细胞,已被证明会释放含有分子货物的细胞外囊泡 (EVs)。在不同的细胞类型中,EVs 促进了 mRNA、microRNA 和蛋白质在细胞之间的转移。在这里,我们描述了从小鼠视网膜祖细胞 (mRPC) 中释放 EV 的释放动力学和内容。有趣的是,mRPC 衍生的 EVs 含有与多能性和视网膜发育相关的 mRNA、miRNA 和蛋白质。包含在 mRPC EVs 中的转录本,包括转录因子 Pax6、Hes1 和 Sox2、有丝分裂染色体稳定剂 Ki67,以及神经中间丝 Nestin 和 GFAP。EV 内容的蛋白质组学分析显示了神经发生生长因子和形态发生蛋白。mRPC EV 被证明可以在细胞群之间转移 GFP mRNA。最后,使用 Cre-loxP 重组系统分析 EV 介导的功能性货物传递,揭示了 Cre+EV 的传递和摄取,然后被目标 mRPC 内化,激活响应者 loxP GFP 表达。总之,该数据支持了 EV 遗传物质在 RPC 群体中封装和转移的范例。RPC EV 的转移可能会影响受者 RPC 的转录和转录后调控,代表了视网膜发育过程中分化和命运决定的一种新机制。