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Monitoring integrity and localization of modified single-stranded RNA oligonucleotides using ultrasensitive fluorescence methods

机译:使用超灵敏荧光方法监测修饰的单链RNA寡核苷酸的完整性和定位

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摘要

Short single-stranded oligonucleotides represent a class of promising therapeutics with diverse application areas. Antisense oligonucleotides, for example, can interfere with various processes involved in mRNA processing through complementary base pairing. Also RNA interference can be regulated by antagomirs, single-stranded siRNA and single-stranded microRNA mimics. The increased susceptibility to nucleolytic degradation of unpaired RNAs can be counteracted by chemical modification of the sugar phosphate backbone. In order to understand the dynamics of such single-stranded RNAs, we investigated their fate after exposure to cellular environment by several fluorescence spectroscopy techniques. First, we elucidated the degradation of four differently modified, dual-dye labeled short RNA oligonucleotides in HeLa cell extracts by fluorescence correlation spectroscopy, fluorescence cross-correlation spectroscopy and Förster resonance energy transfer. We observed that the integrity of the oligonucleotide sequence correlates with the extent of chemical modifications. Furthermore, the data showed that nucleolytic degradation can only be distinguished from unspecific effects like aggregation, association with cellular proteins, or intramolecular dynamics when considering multiple measurement and analysis approaches. We also investigated the localization and integrity of the four modified oligonucleotides in cultured HeLa cells using fluorescence lifetime imaging microscopy. No intracellular accumulation could be observed for unmodified oligonucleotides, while completely stabilized oligonucleotides showed strong accumulation within HeLa cells with no changes in fluorescence lifetime over 24 h. The integrity and accumulation of partly modified oligonucleotides was in accordance with their extent of modification. In highly fluorescent cells, the oligonucleotides were transported to the nucleus. The lifetime of the RNA in the cells could be explained by a balance between release of the oligonucleotides from endosomes, degradation by RNases and subsequent depletion from the cells.
机译:短的单链寡核苷酸代表了一类有广阔应用前景的治疗剂。例如,反义寡核苷酸可通过互补碱基配对干扰参与mRNA加工的各种过程。 RNA干扰也可以由拟南芥,单链siRNA和单链microRNA模拟物调节。糖磷酸骨架的化学修饰可以抵消对未配对RNA进行核酸降解的敏感性增加。为了了解这种单链RNA的动态,我们通过几种荧光光谱技术研究了它们暴露于细胞环境后的命运。首先,我们通过荧光相关光谱,荧光互相关光谱和Förster共振能量转移阐明了HeLa细胞提取物中四种不同修饰的双染料标记的短RNA寡核苷酸的降解。我们观察到寡核苷酸序列的完整性与化学修饰的程度有关。此外,数据表明,在考虑多种测量和分析方法时,只能将核酸分解降解与聚集,与细胞蛋白缔合或分子内动力学等非特异性效应区分开。我们还使用荧光寿命成像显微镜研究了培养的HeLa细胞中四个修饰寡核苷酸的定位和完整性。对于未修饰的寡核苷酸,未观察到细胞内积累,而完全稳定的寡核苷酸在HeLa细胞中显示出强积累,在24小时内荧光寿命没有变化。部分修饰的寡核苷酸的完整性和积累取决于它们的修饰程度。在高荧光细胞中,寡核苷酸被转运到细胞核。 RNA在细胞中的寿命可以通过寡核苷酸从内体释放,RNase降解和随后从细胞中消耗之间的平衡来解释。

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