Laboratory for Molecular Design of Pharmaceutics, Faculty of Pharmaceutical Sciences, Hokkaido University, Kita-12, Nishi-6, Kita-ku, Sapporo, 060-0812, Japan.
Laboratory for Molecular Design of Pharmaceutics, Faculty of Pharmaceutical Sciences, Hokkaido University, Kita-12, Nishi-6, Kita-ku, Sapporo, 060-0812, Japan.
Biomaterials. 2015 Jul;57:107-15. doi: 10.1016/j.biomaterials.2015.04.022. Epub 2015 Apr 24.
Mitochondrial genome-targeting nucleic acids are promising therapeutic candidates for treating mitochondrial diseases. To date, a number of systems for delivering genetic information to the cytosol and the nucleus have been reported, and several successful gene therapies involving gene delivery targeted to the cytosol and the nucleus have been reported. However, much less progress has been made concerning mitochondrial gene delivery systems, and mitochondrial gene therapy has never been achieved. Here, we report on the mitochondrial delivery of an antisense RNA oligonucleotide (ASO) to perform mitochondrial RNA knockdown to regulate mitochondrial function. Mitochondrial delivery of the ASO was achieved using a combination of a MITO-Porter system, which contains mitochondrial fusogenic lipid envelopes for mitochondrial delivery via membrane fusion and D-arm, a mitochondrial import signal of tRNA to the matrix. Mitochondrial delivery of the ASO induces the knockdown of the targeted mitochondria-encoded mRNA and protein, namely cytochrome c oxidase subunit II, a component of the mitochondrial respiratory chain. Furthermore, the mitochondrial membrane potential was depolarized by the down regulation of the respiratory chain as the result of the mitochondrial delivery of ASO. This finding constitutes the first report to demonstrate that the nanocarrier-mediated mitochondrial genome targeting of antisense RNA effects mitochondrial function.
线粒体基因组靶向核酸是治疗线粒体疾病的有前途的治疗候选物。迄今为止,已经报道了许多将遗传信息递送至细胞质和细胞核的系统,并且已经报道了几种涉及针对细胞质和细胞核的基因递送来进行基因治疗的成功案例。然而,关于线粒体基因传递系统的进展要少得多,线粒体基因治疗从未实现过。在这里,我们报告了一种反义 RNA 寡核苷酸 (ASO) 的线粒体传递,以进行线粒体 RNA 敲低来调节线粒体功能。通过使用 MITO-Porter 系统的组合来实现 ASO 的线粒体传递,该系统包含用于通过膜融合和 D 臂将线粒体融合脂质包膜递送至线粒体的线粒体融合脂质包膜,D 臂是 tRNA 进入线粒体基质的线粒体导入信号。ASO 的线粒体传递诱导靶向线粒体编码 mRNA 和蛋白质(即线粒体呼吸链的组成部分细胞色素 c 氧化酶亚基 II)的敲低。此外,由于 ASO 的线粒体传递,呼吸链的下调导致线粒体膜电位去极化。这一发现首次证明了纳米载体介导的反义 RNA 对线粒体基因组的靶向作用影响线粒体功能。