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Electro-osmotic capture and ionic discrimination of peptide and protein biomarkers with FraC nanopores

机译:具有FraC纳米孔的肽和蛋白质生物标志物的电渗透捕获和离子识别

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摘要

Biological nanopores are nanoscale sensors employed for high-throughput, low-cost, and long read-length DNA sequencing applications. The analysis and sequencing of proteins, however, is complicated by their folded structure and non-uniform charge. Here we show that an electro-osmotic flow through Fragaceatoxin C (FraC) nanopores can be engineered to allow the entry of polypeptides at a fixed potential regardless of the charge composition of the polypeptide. We further use the nanopore currents to discriminate peptide and protein biomarkers from 25 kDa down to 1.2 kDa including polypeptides differing by one amino acid. On the road to nanopore proteomics, our findings represent a rationale for amino-acid analysis of folded and unfolded polypeptides with nanopores.
机译:生物纳米孔是用于高通量,低成本和长读取长度DNA测序应用的纳米级传感器。然而,蛋白质的分析和测序因其折叠结构和电荷不均匀而变得复杂。在这里,我们显示通过Fragaceatoxin C(FraC)纳米孔的电渗流可以被工程化,以允许多肽以固定电位进入,而不管多肽的电荷组成如何。我们进一步使用纳米孔电流来区分从25 kDa到1.2 kDa的肽和蛋白质生物标志物,包括相差一个氨基酸的多肽。在通往纳米孔蛋白质组学的道路上,我们的发现代表了对具有纳米孔的折叠和未折叠多肽进行氨基酸分析的基本原理。

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