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Dendron Arrays for the Force-Based Detection of DNA Hybridization Events

机译:Dendron阵列用于基于力检测DNA杂交事件

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Single-molecule force measurement methods have attracted increasing interest over recent years for the development of novel approaches for biomolecular screening. However, many of these developments are currently hindered by the available biomolecule surface attachment methods, in that it is still not trivial to create surfaces and devices with highly defined surface functionality and/or uniformity. Here we offer a new approach to address such issues based on the formation of dendron arrays. Through the measurement of forces between dendron surfaces functionalized with complementary DNA oligonucleotides, we observed several unique properties of the surfaces modified via this approach. The capability to record attractive or "jump-in" forces associated with molecular binding events is one of them. Additionally, these events occur in greater than 80% of measurements, and the forces are dependent on the number of complementary DNA bases of the associating strands while being insensitive to the measurement rate. Combined with a narrow distribution of both attractive forces and unbinding forces we suggest such functionalized surfaces offer a significant advance for fast and accurate force-based studies of oligonucleotide hybridization.
机译:近年来,对于开发用于生物分子筛选的新方法,单分子力测量方法引起了越来越多的兴趣。然而,这些发展中的许多目前受到可利用的生物分子表面附着方法的阻碍,因为创建具有高度限定的表面功能和/或均匀性的表面和装置仍然是不容易的。在这里,我们根据树突阵列的形成提供一种解决此类问题的新方法。通过测量被互补的DNA寡核苷酸功能化的树突表面之间的力,我们观察到了通过这种方法修饰的表面的几个独特特性。记录与分子结合事件相关的吸引力或“跳入”力的能力是其中之一。此外,这些事件发生在超过80%的测量值中,并且作用力取决于关联链的互补DNA碱基的数量,同时对测量速率不敏感。结合吸引力和非结合力的狭窄分布,我们建议这种功能化的表面为基于寡核苷酸杂交的快速准确的基于力的研究提供了重大进展。

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