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Bae, Sung Chul
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Mitochondria localization induced self-assembly of peptide amphiphiles for cellular dysfunction

Author(s)
Jeena, M. T.Palanikumar, L.Go, Eun MinKim, InhyeKang, Myoung GyunLee, SeonikPark, SoohamChoi, HuyeonKim, ChaekyuJin, Seon-MiBae, Sung ChulRhee, Hyun-WooLee, EunjiKwak, Sang KyuRyu, Ja-Hyoung
Issued Date
2017-06
DOI
10.1038/s41467-017-00047-z
URI
https://scholarworks.unist.ac.kr/handle/201301/21963
Fulltext
http://www.nature.com/articles/s41467-017-00047-z
Citation
NATURE COMMUNICATIONS, v.8, pp.26
Abstract
Achieving spatiotemporal control of molecular self-assembly associated with actuation of biological functions inside living cells remains a challenge owing to the complexity of the cellular environments and the lack of characterization tools. We present, for the first time, the organelle-localized self-assembly of a peptide amphiphile as a powerful strategy for controlling cellular fate. A phenylalanine dipeptide (FF) with a mitochondria-targeting moiety, triphenyl phosphonium (Mito-FF), preferentially accumulates inside mitochondria and reaches the critical aggregation concentration to form a fibrous nanostructure, which is monitored by confocal laser scanning microscopy and transmission electron microscopy. The Mito-FF fibrils induce mitochondrial dysfunction via membrane disruption to cause apoptosis. The organelle-specific supramolecular system provides a new opportunity for therapeutics and in-depth investigations of cellular functions.
Publisher
NATURE PUBLISHING GROUP
ISSN
2041-1723
Keyword
DEATHNANOSTRUCTURESMOLECULESCELLS

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