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一种靶向线粒体DNA突变的线性五环吡咯-咪唑聚酰胺-三苯基鏻共轭物可有效诱导携带该突变的HeLa杂交细胞凋亡。

A linear five-ring pyrrole-imidazole polyamide-triphenylphosphonium conjugate targeting a mitochondrial DNA mutation efficiently induces apoptosis of HeLa cybrid cells carrying the mutation.

作者信息

Koshikawa Nobuko, Kida Yuki, Yasui Nanami, Shinozaki Yoshinao, Tsuji Kohei, Watanabe Takayoshi, Lin Jason, Yamamoto Seigi, Takenaga Keizo, Nagase Hiroki

机构信息

Division of Cancer Genetics, Chiba Cancer Center Research Institute, 666-2 Nitona-cho, Chuoh-ku, Chiba, Japan.

Division of Cancer Genetics, Chiba Cancer Center Research Institute, 666-2 Nitona-cho, Chuoh-ku, Chiba, Japan; Organometallchemie Eduard-Zintl-Institut Technische Universität Darmstadt, Alarich-Weiss-Str. 12 64206 Darmstadt, Germany.

出版信息

Biochem Biophys Res Commun. 2021 Oct 22;576:93-99. doi: 10.1016/j.bbrc.2021.08.088. Epub 2021 Aug 31.

Abstract

Somatic mutations in mitochondrial DNA may provide a new avenue for cancer therapy due to their associations to a number of cancers and a tendency of homoplasmicity. In consideration of mitochondrial features and its relatively small genome size, a nucleotide-based targeting approach is a considerably more promising option. To explore the efficacy of short linear N-methylpyrrole-N-methylimidazole polyamide (PI polyamide), we synthesized a five-ring short PI polyamide that provided sequence-specific homing for the A3243G mitochondrial mutation upon conjugation with triphenylphosphonium cation (TPP). This PI polyamide-TPP was able to induce cytotoxicity in HeLamtA3243G cybrid cells, while preserving preferential binding for oligonucleotides containing the A3243G motif from melting temperature assays. The PI polyamide-TPP also localized in the mitochondria in HeLamtA3243G cells and induced mitochondrial reactive oxygen species production, mitophagy and apoptosis in a mutation-specific fashion compared to the wild-type HeLamtHeLa cybrids; normal human dermal fibroblasts were also relatively unaffected to suggest discriminating selectivity for the mutant mitochondria, offering a novel outlook for cancer therapy via mitochondrial homing of short linear PIP-TPPs.

摘要

线粒体DNA中的体细胞突变可能为癌症治疗提供新途径,因为它们与多种癌症相关且具有同质性倾向。考虑到线粒体的特征及其相对较小的基因组大小,基于核苷酸的靶向方法是一个更具前景的选择。为了探索短线性N-甲基吡咯-N-甲基咪唑聚酰胺(PI聚酰胺)的功效,我们合成了一种五环短PI聚酰胺,它与三苯基膦阳离子(TPP)结合后能为A3243G线粒体突变提供序列特异性归巢。这种PI聚酰胺-TPP能够在HeLamtA3243G杂交细胞中诱导细胞毒性,同时从解链温度分析中保留对含有A3243G基序的寡核苷酸的优先结合。与野生型HeLamtHeLa杂交细胞相比,PI聚酰胺-TPP也定位于HeLamtA3243G细胞的线粒体中,并以突变特异性方式诱导线粒体活性氧生成、线粒体自噬和凋亡;正常人类皮肤成纤维细胞也相对未受影响,表明对突变线粒体具有区分选择性,为通过短线性PIP-TPPs的线粒体归巢进行癌症治疗提供了新的前景。

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