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Fingerprinting of Peptides with a Large Channel of Bacteriophage Phi29 DNA Packaging Motor

机译:带有噬菌体Phi29 DNA包装马达大通道的肽的指纹图谱

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Nanopore technology has become a highly sensitive and powerful tool for single molecule sensing of chemicals and biopolymers. Protein pores have the advantages of size amenability, channel homogeneity, and fabrication reproducibility. But most well-studied protein pores for sensing are too small for passage of peptide analytes that are typically a few nanometers in dimension. The funnel-shaped channel of bacteriophage phi29 DNA packaging motor has previously been inserted into a lipid membrane to serve as a larger pore with a narrowest N-terminal constriction of 3.6 nm and a wider C-terminal end of 6 nm. Here, the utility of phi29 motor channel for fingerprinting of various peptides using single molecule electrophysiological assays is reported. The translocation of peptides is proved unequivocally by single molecule fluorescence imaging. Current blockage percentage and distinctive current signatures are used to distinguish peptides with high confidence. Each peptide generated one or two distinct current blockage peaks, serving as typical fingerprint for each peptide. The oligomeric states of peptides can also be studied in real time at single molecule level. The results demonstrate the potential for further development of phi29 motor channel for detection of disease-associated peptide biomarkers.
机译:纳米孔技术已成为用于化学和生物聚合物单分子传感的高度灵敏且功能强大的工具。蛋白质孔具有尺寸适应性,通道均匀性和制造可重复性的优点。但是,大多数用于传感的经过深入研究的蛋白质孔过小,无法通过通常尺寸为几纳米的肽分析物。噬菌体phi29 DNA包装电机的漏斗形通道先前已插入脂质膜中,以充当更大的孔,其最窄的N末端收缩为3.6 nm,更宽的C末端收缩为6 nm。在此,已报道了利用单分子电生理测定法将phi29运动通道用于各种肽的指纹图谱的实用性。肽的易位通过单分子荧光成像明确证明。电流阻滞百分比和独特的电流特征用于高信度区分肽。每个肽产生一个或两个不同的电流阻滞峰,用作每个肽的典型指纹。肽的寡聚状态也可以在单分子水平上实时研究。结果证明了进一步开发phi29运动通道以检测疾病相关肽生物标志物的潜力。

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