线粒体
肽
化学
自组装
细胞生物学
两亲性
生物
生物化学
共聚物
有机化学
聚合物
作者
M. T. Jeena,L. Palanikumar,Eun Min Go,Inhye Kim,Myoung Gyun Kang,Seonik Lee,Sooham Park,Huyeon Choi,Chaekyu Kim,Seon‐Mi Jin,Sung Chul Bae,Hyun‐Woo Rhee,Eunji Lee,Sang Kyu Kwak,Ja‐Hyoung Ryu
标识
DOI:10.1038/s41467-017-00047-z
摘要
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.Spatiotemporal control of intracellular molecular self-assembly holds promise for therapeutic applications. Here the authors develop a peptide consisting of a phenylalanine dipeptide with a mitochondrial targeting moiety to form self-assembling fibrous nanostructures within mitochondria, leading to apoptosis.
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