肽
磷酸化
材料科学
分子
纳米医学
磷酸酶
体外
自组装
酶
小分子
组合化学
纳米技术
生物物理学
化学
生物化学
纳米颗粒
生物
有机化学
作者
Chunhui Liang,Zhongyan Wang,Tengyan Xu,Yaoxia Chen,Debin Zheng,Lushuai Zhang,Wenwen Zhang,Zhimou Yang,Yang Shi,Jie Gao
标识
DOI:10.1021/acsami.0c02572
摘要
Inspired by the biological process of phosphorylation for which different sites of the same protein may have different activities and functions, we utilized phosphatase-based enzyme-instructed self-assembly (EISA) to construct self-assembled nanomedicine from the precursors with different phosphorylated sites. We found that, although the obtained self-assembling molecules after EISA were identical, the changes of EISA catalytic sites could determine the outcome of molecular self-assembly. The precursor with the phosphorylated site in the middle preorganized before EISA, while the ones with other phosphorylated sites could not preorganize before EISA. After EISA, the preorganized precursor then resulted in more stable and ordered assemblies than those of the others, which showed increased cellular uptake and up to 1.7-fold higher efficacy in an antitumor therapeutic compared to those assembled from unorganized precursors.
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