Bell Nicholas A W, Keyser Ulrich F
Cavendish Laboratory, University of Cambridge , JJ Thomson Avenue, Cambridge, CB3 0HE, United Kingdom.
J Am Chem Soc. 2015 Feb 11;137(5):2035-41. doi: 10.1021/ja512521w. Epub 2015 Feb 3.
Nanopores are a versatile technique for the detection and characterization of single molecules in solution. An ongoing challenge in the field is to find methods to selectively detect specific biomolecules. In this work we describe a new technique for sensing specific proteins using unmodified solid-state nanopores. We engineered a double strand of DNA by hybridizing nearly two hundred oligonucleotides to a linearized version of the m13mp18 virus genome. This engineered double strand, which we call a DNA carrier, allows positioning of protein binding sites at nanometer accurate intervals along its contour via DNA conjugation chemistry. We measure the ionic current signal of translocating DNA carriers as a function of the number of binding sites and show detection down to the single protein level. Furthermore, we use DNA carriers to develop an assay for identifying a single protein species within a protein mixture.
纳米孔是用于检测和表征溶液中单个分子的一种通用技术。该领域目前面临的一项挑战是找到选择性检测特定生物分子的方法。在这项工作中,我们描述了一种使用未修饰的固态纳米孔传感特定蛋白质的新技术。我们通过将近两百个寡核苷酸与m13mp18病毒基因组的线性化版本杂交,构建了一条双链DNA。这条构建的双链,我们称之为DNA载体,通过DNA偶联化学方法,能够沿着其轮廓以纳米级精确间隔定位蛋白质结合位点。我们测量了转运DNA载体时的离子电流信号与结合位点数目的函数关系,并展示了低至单个蛋白质水平的检测能力。此外,我们使用DNA载体开发了一种用于鉴定蛋白质混合物中单一蛋白质种类的检测方法。