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外泌体 NANOGP8 DNA 的 3'-UTR 序列作为细胞外囊泡定位信号。

3'-UTR Sequence of Exosomal NANOGP8 DNA as an Extracellular Vesicle-Localization Signal.

机构信息

Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, FL 32816, USA.

出版信息

Int J Mol Sci. 2024 Jul 2;25(13):7294. doi: 10.3390/ijms25137294.

Abstract

Extracellular vesicles (EVs) are garnering attention as a safe and efficient biomolecule delivery system. EVs intrinsically play a crucial role in intercellular communication and pathophysiology by transporting functionally active DNA molecules. The internalized DNA pleiotropically affects the recipient cells. Considering these salient features, an intentional incorporation of specific DNA gene cassettes into EVs and their subsequent delivery to the target cells has potential applications in genetic engineering. Moreover, efficient ways to insert the DNA into EVs during their biogenesis is valuable. Our current research is a step in the development of this technology. As such, cancer cells are known to secrete exosomes containing increased amounts of double-stranded DNA than normal cells. The clonal analysis in our previously published data revealed that exosomes released from various cancer cells contained a significantly larger population of NANOGP8 DNA with a 22-base pair insertion in the 3'-untranslated region (UTR) compared to those secreted by normal cells. This finding led us to hypothesize that the 22-base pair insertion may act as a signal to facilitate the incorporation of NANOGP8 DNA into the exosomes. To test this hypothesis, we compared the EV localization of an Enhanced Green Fluorescent Protein (EGFP) gene fused with the NANOGP8 3'-UTR, with and without the 22-base pair insertion. The quantitative PCR analysis showed a significantly higher EGFP DNA accumulation in exosomes released from cells transfected with the gene cassette containing the 3'-UTR with the 22-base pair insertion. The discovery of a DNA localization signal in exosomal DNA's 3'-UTR could pave the way for the development of an EV-based DNA delivery system. This technology will open new possibilities in genetic engineering and innovative therapies using nucleic acid medicine.

摘要

细胞外囊泡 (EVs) 作为一种安全有效的生物分子递药系统备受关注。EVs 通过转运具有功能活性的 DNA 分子,在细胞间通讯和病理生理学中发挥着至关重要的作用。内化的 DNA 对受体细胞产生多效性影响。鉴于这些显著特征,将特定的 DNA 基因盒有目的地整合到 EVs 中,并将其递送到靶细胞,在基因工程中有潜在的应用。此外,在 EVs 生物发生过程中高效地将 DNA 插入其中是有价值的。我们目前的研究是朝着这一技术发展迈出的一步。例如,癌细胞分泌的外泌体中含有比正常细胞更多的双链 DNA。我们之前发表的数据的克隆分析表明,与正常细胞分泌的外泌体相比,来自各种癌细胞的外泌体中含有大量 NANOGP8 DNA,其 3'-非翻译区 (UTR) 中有 22 个碱基插入。这一发现使我们假设,22 个碱基的插入可能作为一种信号,促进 NANOGP8 DNA 整合到外泌体中。为了验证这一假设,我们比较了融合有 NANOGP8 3'-UTR 的增强型绿色荧光蛋白 (EGFP) 基因的 EV 定位,比较了有和没有 22 个碱基插入的情况。定量 PCR 分析显示,含有 3'-UTR 插入 22 个碱基的基因盒转染的细胞释放的外泌体中 EGFP DNA 的积累明显更高。在外泌体 DNA 3'-UTR 中发现 DNA 定位信号,可能为开发基于 EV 的 DNA 递药系统铺平道路。这项技术将为使用核酸药物的基因工程和创新疗法开辟新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cbd/11242200/f5ba677b0522/ijms-25-07294-g001.jpg

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