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タイトル: Design of an Artificial Peptide Inspired by Transmembrane Mitochondrial Protein for Escorting Exogenous DNA into the Mitochondria to Restore their Functions by Simultaneous Multiple Gene Expression
著者: Yoshinaga, Naoto
Miyamoto, Takaaki
Odahara, Masaki
Takeda‐Kamiya, Noriko
Toyooka, Kiminori
Nara, Seia
Nishimura, Haruna
Ling, Feng
Su'etsugu, Masayuki
Yoshida, Minoru
Numata, Keiji
著者名の別形: 吉永, 直人
宮本, 昂明
小田原, 真樹
武田, 紀子
豊岡, 公徳
奈良, 聖亜
西村, はる菜
凌, 楓
末次, 正幸
吉田, 稔
沼田, 圭司
キーワード: gene delivery
mitochondria
mitochondria-targeting peptide
polyplex
発行日: 19-Feb-2024
出版者: Wiley
誌名: Advanced Functional Materials
巻: 34
号: 8
論文番号: 2306070
抄録: Mitochondria are vital organelles regulating essential cellular functions. Human mitochondrial DNA (mtDNA) consists of 37 genes, 13 of which encode mitochondrial proteins, and the remaining 24 genes encode two ribosomal RNAs and 22 transfer RNAs needed for the translation of the mtDNA-encoded 13 proteins. However, mtDNA often impairs the expression and function of these genes due to various mutations, ultimately causing mitochondrial dysfunction. To recover from this desperate condition, developing the technology to supply all mitochondrial proteins encoded by mtDNA at once is an urgent task, but there is no established strategy for this purpose. In this study, a simple yet effective mitochondrial gene delivery system is proposed comprising an artificial peptide inspired by a transmembrane mitochondrial membrane protein. The designed mitochondria-targeting peptides presented on the carrier surface effectively guide the encapsulated plasmid to the mitochondria, facilitating mitochondrial uptake and gene expression. The developed system successfully delivers exogenous mtDNA to mtDNA-depleted cells and leads to simultaneous multigene expression, ultimately restoring mitochondrial functions, including the mitochondrial respiration rate. The established multiple gene expression system in each mitochondrion is a game-changing technology that can accelerate the development of mitochondrial engineering technologies as well as clinical applications for mitochondrial diseases.
記述: 新規ミトコンドリア膜貫通ペプチドによる遺伝子送達 --ミトコンドリア内部で効率的な多重遺伝子発現を達成--. 京都大学プレスリリース. 2023-11-02.
著作権等: © 2023 The Authors. Advanced Functional Materials published by Wiley-VCH GmbH
This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
URI: http://hdl.handle.net/2433/287049
DOI(出版社版): 10.1002/adfm.202306070
関連リンク: https://www.t.kyoto-u.ac.jp/ja/research/topics/202311011301
出現コレクション:学術雑誌掲載論文等

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