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Unraveling the complexity of the interactions of DNA nucleotides with gold by single molecule force spectroscopy

机译:解开的相互作用的复杂性由单分子DNA核苷酸用金子力光谱学

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Addressing the effect of different environmental factors on the adsorption of DNA to solid supports is critical for the development of robust miniaturized devices for applications ranging from biosensors to next generation molecular technology. Most of the time, thiol-based chemistry is used to anchor DNA on gold - a substrate commonly used in nanotechnology - and little is known about the direct interaction between DNA and gold. So far there have been no systematic studies on the direct adsorption behavior of the deoxyribonucleotides (i.e., a nitrogenous base, a deoxyribose sugar, and a phosphate group) and on the factors that govern the DNA-gold bond strength. Here, using single molecule force spectroscopy, we investigated the interaction of the four individual nucleotides, adenine, guanine, cytosine, and thymine, with gold. Experiments were performed in three salinity conditions and two surface dwell times to reveal the factors that influence nucleotide-Au bond strength. Force data show that, at physiological ionic strength, adenine-Au interactions are stronger, asymmetrical and independent of surface dwell time as compared to cytosine-Au and guanine-Au interactions. We suggest that in these conditions only adenine is able to chemisorb on gold. A decrease of the ionic strength significantly increases the bond strength for all nucleotides. We show that moderate ionic strength along with longer surface dwell period suggest weak chemisorption also for cytosine and guanine.
机译:应对不同环境的影响因素对DNA的吸附到固体支持的发展是至关重要的健壮的小型设备的应用程序从传感器到下一代分子技术。thiol-based化学用于锚DNA金——一个衬底中常用纳米技术——知之甚微DNA和黄金之间的直接交互。没有系统的研究直接的吸附行为脱氧核苷酸(即含氮碱基,脱氧核糖和磷酸基)管理DNA-gold债券的因素的力量。光谱,我们调查的交互四个人核苷酸,腺嘌呤,鸟嘌呤,胞嘧啶、胸腺嘧啶、用金子包裹。在三个盐度实验进行条件和两个表面停顿时间显示nucleotide-Au债券的因素影响的力量。离子强度,adenine-Au交互强,不对称和独立的表面住时间比cytosine-Au和guanine-Au交互。条件只能够用化学方法吸收腺嘌呤黄金。显著增加键的强度核苷酸。表面停留时间较长的建议弱化学吸收作用也为胞嘧啶鸟嘌呤。

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