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Cell Nucleus Targeting for Living Cell Extraction of Nucleic Acid Associated Proteins with Intracellular Nanoprobes of Magnetic Carbon Nanotubes

机译:磁性碳纳米管的细胞内纳米探针靶向核酸相关蛋白的活细胞提取的细胞核

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Since nanoparticles could be ingested by cells naturally and target at a specific cellular location as designed, the extraction of intracellular proteins from living cells for large-scale analysis by nanoprobes seems to be ideally possible. Nucleic acid associated proteins (NAaP) take the crucial position during biological processes in maintaining and regulating gene structure and gene related behaviors, yet there are still challenges during the global investigation of intracellular NAaP, especially from living cells. In this work, a strategy to extract intracellular proteins from living cells with the magnetic carbon nanotube (oMWCNT@Fe_3O_4) as an intracellular probe is developed, to achieve the high throughput analysis of NAaP from living human hepatoma BEL-7402 cells with a mass spectrometry-based proteomic approach. Due to the specific intracellular localization of the magnetic carbon nanotubes around nuclei and its strong interaction with nucleic acids, the highly efficient extraction was realized for cellular NAaP from living cells, with the capability of identifying 2383 intracellular NAaP from only ca. 10 000 living cells. This method exhibited potential applications in dynamic and in situ analysis of intracellular proteins.
机译:由于纳米粒子可以被细胞自然摄取,并按设计目标靶向特定的细胞位置,因此理想情况下,从活细胞中提取细胞内蛋白用于大规模分析似乎是可行的。核酸相关蛋白(NAaP)在维持和调节基因结构和基因相关行为的生物学过程中起着至关重要的作用,但是在细胞内NAaP的全球研究中,尤其是在活细胞中,仍然存在挑战。在这项工作中,开发了一种以磁性碳纳米管(oMWCNT @ Fe_3O_4)作为细胞内探针从活细胞中提取细胞内蛋白质的策略,以实现通过质谱法从活人肝癌BEL-7402细胞中高通量分析NAaP。基于蛋白质组学的方法。由于磁性碳纳米管在细胞核周围的特定细胞内定位及其与核酸的强相互作用,因此实现了从活细胞中高效提取细胞NAaP的能力,仅从ca即可鉴定2383个细胞内NAaP。 10000个活细胞。该方法在细胞内蛋白质的动态和原位分析中显示出潜在的应用。

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