生物
DNA复制
染色体复制控制
复制前复合体
复制因子C
DNA
原点识别复合体
DNA复制因子CDT1
纳米团簇
细胞生物学
微小染色体维持
真核细胞DNA复制
复制蛋白A
分子生物学
DNA损伤
解旋酶
生物物理学
遗传学
DNA结合蛋白
基因
纳米技术
材料科学
转录因子
核糖核酸
作者
Yu Tao,Tomás Aparicio,Mingqiang Li,Kam W. Leong,Shan Zha,Jean Gautier
摘要
Silver nanoclusters (AgNCs) have outstanding physicochemical characteristics, including the ability to interact with proteins and DNA. Given the growing number of diagnostic and therapeutic applications of AgNCs, we evaluated the impact of AgNCs on DNA replication and DNA damage response in cell-free extracts prepared from unfertilized Xenopus laevis eggs. We find that, among a number of silver nanomaterials, AgNCs uniquely inhibited genomic DNA replication and abrogated the DNA replication checkpoint in cell-free extracts. AgNCs did not affect nuclear membrane or nucleosome assembly. AgNCs-supplemented extracts showed a strong defect in the loading of the mini chromosome maintenance (MCM) protein complex, the helicase that unwinds DNA ahead of replication forks. FLAG-AgNCs immunoprecipitation and mass spectrometry analysis of AgNCs associated proteins demonstrated direct interaction between MCM and AgNCs. Our studies indicate that AgNCs directly prevent the loading of MCM, blocking pre-replication complex (pre-RC) assembly and subsequent DNA replication initiation. Collectively, our findings broaden the scope of silver nanomaterials experimental applications, establishing AgNCs as a novel tool to study chromosomal DNA replication.
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