Intracellular traffic of oligodeoxynucleotides in and out of the nucleus: effect of exportins and DNA structure.

Oligonucleotides Pub Date : 2010-12-01 Epub Date: 2010-10-14 DOI:10.1089/oli.2010.0255
Stephen J Forsha, Irina V Panyutin, Ronald D Neumann, Igor G Panyutin
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引用次数: 10

Abstract

The delivery of oligodeoxynucleotides (ODNs) into cells is widely utilized for antisense, antigene, aptamer, and similar approaches to regulate gene and protein activities based upon the ODNs' sequence-specific recognition. Short pieces of DNA can also be generated in biological processes, for example, after degradation of viral or bacterial DNA. However, the mechanisms that regulate intracellular trafficking and localization of ODNs are not fully understood. Here we study the effects of major transporters of microRNA, exportin-1 (Exp1) and exportin-5 (Exp5), on the transport of single-stranded ODNs in and out of the nucleus. For this, we employed a fluorescent microscopy-based assay to quantitatively measure the redistribution of ODNs between the nucleus and cytoplasm of live cells. By measuring the fluorescent signal of the nuclei we observed that after delivery into cells via cationic liposomes ODNs rapidly accumulated inside nuclei. However, after removal of the ODN/liposome containing media, we found re-localization of ODNs from the nuclei to cytoplasm of the cells over the time course of several hours. Downregulation of the Exp5 gene by siRNA resulted in a slight increase of ODN uptake into the nucleus, but the kinetics of ODN efflux to the cytoplasm was not affected. Inhibition of Exp1 with leptomycin B somewhat slowed down the clearance of ODNs from the nucleus; however, within 6 hours most of the ODN were still being cleared form the nucleus. ODNs that could form intramolecular G-quadruplex structures behaved differently. They also accumulated in nuclei, although at a lesser extent than unstructured ODN, but they remained there for up to 20 hours after transfection, causing significant cell death. We conclude that Exp1 and Exp5 are not the major transporters of our ODNs out of the nucleus, and that the transport of ODNs is strongly affected by their secondary structure.

细胞核内外寡脱氧核苷酸的细胞内运输:输出蛋白和DNA结构的影响。
寡脱氧核苷酸(oligodeoxynucleotides, ODNs)进入细胞被广泛用于反义、抗原、适体和类似的方法,以基于ODNs序列特异性识别来调节基因和蛋白质的活性。短片段的DNA也可以在生物过程中产生,例如,在病毒或细菌DNA降解之后。然而,调控细胞内转运和odn定位的机制尚不完全清楚。在这里,我们研究了microRNA的主要转运体,出口蛋白1 (Exp1)和出口蛋白5 (Exp5)对单链odn在细胞核内外运输的影响。为此,我们采用基于荧光显微镜的方法定量测量活细胞细胞核和细胞质之间odn的再分布。通过测量细胞核的荧光信号,我们观察到odn通过阳离子脂质体进入细胞后,在细胞核内迅速积累。然而,在去除含有ODN/脂质体的培养基后,我们发现在几个小时的时间过程中,ODN从细胞核重新定位到细胞的细胞质。siRNA对Exp5基因的下调导致ODN进入细胞核的摄取略有增加,但ODN向细胞质外排的动力学不受影响。leptomycin B对Exp1的抑制在一定程度上减缓了细胞核中odn的清除;然而,在6小时内,大部分ODN仍被从细胞核中清除。可以形成分子内g -四重结构的odn表现不同。它们也在细胞核中积累,尽管程度低于非结构化ODN,但它们在转染后仍在细胞核中积聚长达20小时,导致显著的细胞死亡。我们得出结论,Exp1和Exp5不是我们的odn出核的主要转运蛋白,odn的转运受到它们的二级结构的强烈影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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