内吞作用
内体
细胞内
小窝
脂筏
生物物理学
化学
脱磷
细胞生物学
肽
纳米技术
磷酸酶
膜
磷酸化
细胞
材料科学
生物化学
生物
作者
Hongjian He,Jiaqi Guo,Jiashu Xu,Jiaqing Wang,Shuang Liu,Bing Xu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2021-05-03
卷期号:21 (9): 4078-4085
被引量:32
标识
DOI:10.1021/acs.nanolett.1c01029
摘要
Alkaline phosphatase (ALP) enables intracellular targeting by peptide assemblies, but how the ALP substrates enter cells remains elusive. Here we show that nanoscale phosphopeptide assemblies cluster ALP to enable caveolae-mediated endocytosis (CME) and endosomal escape. Specifically, fluorescent phosphopeptides undergo enzyme-catalyzed self-assembly to form nanofibers. Live cell imaging unveils that phosphopeptides nanoparticles, coincubated with HEK293 cells overexpressing red fluorescent protein-tagged tissue-nonspecific ALP (TNAP-RFP), cluster TNAP-RFP in lipid rafts to enable CME. Further dephosphorylation of the phosphopeptides produces peptidic nanofibers for endosomal escape. Inhibiting TNAP, cleaving the membrane anchored TNAP, or disrupting lipid rafts abolishes the endocytosis. Decreasing the transformation to nanofibers prevents the endosomal escape. As the first study establishing a dynamic continuum of nanoscale assemblies for cellular uptake, this work illustrates an effective design for enzyme-responsive supramolecular therapeutics and provides mechanism insights for understanding the dynamics of cellular uptake of proteins or exogenous peptide aggregates.
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