Gebski Bianca L, Mann Chrisopher J, Fletcher Susan, Wilton Stephen D
Centre for Neuromuscular and Neurological Disorders, University of Western Australia, 4th Floor, "A" Block, QE II Medical Centre, Verdun Street, Nedlands, Perth, Western Australia 6009, Australia.
Hum Mol Genet. 2003 Aug 1;12(15):1801-11. doi: 10.1093/hmg/ddg196.
The mdx mouse model of muscular dystrophy arose due to a nonsense mutation in exon 23 of the dystrophin gene. We have previously demonstrated that 2'-O-methyl phosphorothioate antisense oligonucleotides (AOs) can induce removal of exon 23 during processing of the primary transcript. This results in an in-frame mRNA transcript and subsequent expression of a slightly shorter dystrophin protein in mdx muscle. Refinement of AO design has allowed efficient exon skipping to be induced in mdx mouse muscle cultures at nanomolar concentrations. In contrast, splicing intervention by morpholino AOs has been applied to the beta-globin gene pre-mRNA in cultured cells to correct aberrant splicing when delivered in the micromolar range. The morpholino chemistry produces a neutral molecule that has exceptional biological stability but poor cellular delivery. We present data showing that exon skipping in mdx cells may be induced by morpholino AOs at nanomolar concentrations when annealed to a sense oligonucleotide or "leash", and delivered as a cationic lipoplex. We have investigated a number of leash designs and chemistries, including mixed backbone oligonucleotides, and their ability to influence delivery and efficacy of the morpholino AO. Significantly, we detected dystrophin protein synthesis and correct sarcolemmal localisation after intramuscular injection of morpholino AO : leash lipoplexes in mdx muscle in vivo. We show enhanced delivery of a morpholino AO, enabling the advantageous properties to be exploited for potentially therapeutic outcomes.
杜兴氏肌营养不良症的mdx小鼠模型是由于肌营养不良蛋白基因第23外显子的无义突变而产生的。我们之前已经证明,2'-O-甲基硫代磷酸反义寡核苷酸(AO)可以在初级转录本加工过程中诱导第23外显子的去除。这导致了一个读码框内的mRNA转录本,并随后在mdx肌肉中表达出略短的肌营养不良蛋白。AO设计的改进使得在纳摩尔浓度下就能在mdx小鼠肌肉培养物中高效诱导外显子跳跃。相比之下,吗啉代AO的剪接干预已应用于培养细胞中的β-珠蛋白基因前体mRNA,以在微摩尔范围内递送时纠正异常剪接。吗啉代化学产生一种中性分子,其具有出色的生物稳定性但细胞递送性较差。我们提供的数据表明,当与正义寡核苷酸或“拴链”退火并作为阳离子脂质体递送时,吗啉代AO可以在纳摩尔浓度下诱导mdx细胞中的外显子跳跃。我们研究了许多拴链设计和化学组成,包括混合骨架寡核苷酸,以及它们影响吗啉代AO递送和功效的能力。重要的是,我们在体内对mdx肌肉进行肌内注射吗啉代AO:拴链脂质体后,检测到了肌营养不良蛋白的合成以及正确的肌膜定位。我们展示了吗啉代AO递送的增强,使其有利特性能够被用于潜在的治疗结果。