Noncovalent peptide-mediated delivery of chemically modified steric block oligonucleotides promotes splice correction: quantitative analysis of uptake and biological effect.

Sandra D Laufer, Anna Lena Recke, Sandra Veldhoen, Alexander Trampe, Tobias Restle
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引用次数: 11

Abstract

Despite numerous encouraging reports in the literature, the efficiency of cell penetrating peptides (CPPs) in promoting cellular delivery of bioactive cargos is still limited. To extend our current understanding of the underlying limitations of such approaches, we performed quantitative uptake studies of different chemically modified (2'-O-methyl, LNA and PNA) steric block oligonucleotides, targeted against a mutated splice site inserted in a firefly luciferase reporter gene construct, applying the peptide carrier MPGalpha as a model system. The peptide formed stable noncovalent complexes with phosphorothioate oligonucleotide (PTO) and locked nucleic acid (LNA) modified oligonucleotides, whereas the neutral peptide nucleic acid (PNA) had to be hybridized to an unmodified DNA to allow for complex formation. Detailed quantitative uptake studies revealed comparable numbers of intracellular PTO and LNA oligonucleotides after peptide-mediated delivery. Surprisingly, the PTO derivative showed the strongest upregulation of reporter gene activity of about 100-fold followed by the PNA (40-fold) and LNA (10-fold). Electroporation and microinjection studies proved that delivery itself was not the limiting factor for the low activity of the LNA derivative. Maximal achievable reporter gene activity could be observed only after addition of chloroquine (CQ), indicative of an endosomal pathway involved. This is in line with nuclear microinjection experiments, which show that the minimal number of steric block molecules needed to trigger the observed reporter upregulation is about two orders of magnitude lower than determined after peptide or cationic lipid delivery.

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非共价肽介导的化学修饰的位嵌段寡核苷酸递送促进剪接纠正:摄取和生物效应的定量分析。
尽管文献中有许多令人鼓舞的报道,但细胞穿透肽(CPPs)在促进生物活性物质的细胞递送方面的效率仍然有限。为了扩大我们目前对这些方法潜在局限性的理解,我们进行了不同化学修饰(2'- o -甲基,LNA和PNA)的空间块寡核苷酸的定量摄取研究,针对萤火虫荧光素酶报告基因结构中插入的突变剪接位点,应用肽载体MPGalpha作为模型系统。肽与硫代寡核苷酸(PTO)和锁定核酸(LNA)修饰的寡核苷酸形成稳定的非共价复合物,而中性肽核酸(PNA)必须与未修饰的DNA杂交才能形成复合物。详细的定量摄取研究显示,在肽介导的递送后,细胞内PTO和LNA寡核苷酸的数量相当。令人惊讶的是,PTO衍生物显示最强的报告基因活性上调约100倍,其次是PNA(40倍)和LNA(10倍)。电穿孔和显微注射研究证明,递送本身并不是LNA衍生物活性低的限制因素。只有加入氯喹(chloroquine, CQ)后,才能观察到可达到的最大报告基因活性,这表明其参与了内体途径。这与核显微注射实验一致,该实验表明,触发所观察到的报告蛋白上调所需的最小空间块分子数量比肽或阳离子脂质递送后确定的要低两个数量级。
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Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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