自噬
生物
线粒体
细胞生物学
生物发生
粒体自噬
药物发现
基因沉默
生物化学
基因
细胞凋亡
作者
Daiki Takahashi,Jun Moriyama,Tomoe Y. Nakamura,Erika Miki,Eriko Takahashi,Ayami Sato,Takaaki Akaike,Kaori Itto‐Nakama,Hirokazu Arimoto
出处
期刊:Molecular Cell
[Elsevier]
日期:2019-10-09
卷期号:76 (5): 797-810.e10
被引量:557
标识
DOI:10.1016/j.molcel.2019.09.009
摘要
Protein silencing represents an essential tool in biomedical research. Targeted protein degradation (TPD) strategies exemplified by PROTACs are rapidly emerging as modalities in drug discovery. However, the scope of current TPD techniques is limited because many intracellular materials are not substrates of proteasomal clearance. Here, we described a novel targeted-clearance strategy (autophagy-targeting chimera [AUTAC]) that contains a degradation tag (guanine derivatives) and a warhead to provide target specificity. As expected from the substrate scope of autophagy, AUTAC degraded fragmented mitochondria as well as proteins. Mitochondria-targeted AUTAC accelerated both the removal of dysfunctional fragmented mitochondria and the biogenesis of functionally normal mitochondria in patient-derived fibroblast cells. Cytoprotective effects against acute mitochondrial injuries were also seen. Canonical autophagy is viewed as a nonselective bulk decomposition system, and none of the available autophagy-inducing agents exhibit useful cargo selectivity. With its target specificity, AUTAC provides a new modality for research on autophagy-based drugs.
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