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使用离心机的多重单分子力谱法。

Multiplexed single-molecule force spectroscopy using a centrifuge.

作者信息

Yang Darren, Ward Andrew, Halvorsen Ken, Wong Wesley P

机构信息

School of engineering and applied sciences, Harvard University, Cambridge, Massachusetts 02138, USA.

Program in Cellular and Molecular Medicine, Boston Children's Hospital, Boston, Massachusetts 02115, USA.

出版信息

Nat Commun. 2016 Mar 17;7:11026. doi: 10.1038/ncomms11026.

Abstract

We present a miniature centrifuge force microscope (CFM) that repurposes a benchtop centrifuge for high-throughput single-molecule experiments with high-resolution particle tracking, a large force range, temperature control and simple push-button operation. Incorporating DNA nanoswitches to enable repeated interrogation by force of single molecular pairs, we demonstrate increased throughput, reliability and the ability to characterize population heterogeneity. We perform spatiotemporally multiplexed experiments to collect 1,863 bond rupture statistics from 538 traceable molecular pairs in a single experiment, and show that 2 populations of DNA zippers can be distinguished using per-molecule statistics to reduce noise.

摘要

我们展示了一种微型离心力显微镜(CFM),它将台式离心机重新用于高通量单分子实验,具备高分辨率粒子跟踪、大作用力范围、温度控制和简单的按钮操作功能。通过整合DNA纳米开关以实现对单分子对的反复力作用询问,我们证明了其通量增加、可靠性提高以及表征群体异质性的能力。我们进行了时空多路复用实验,在单个实验中从538个可追踪的分子对收集了1863个键断裂统计数据,并表明使用单分子统计数据可以区分DNA拉链的两个群体以降低噪声。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a01/4800429/84101ccccfb1/ncomms11026-f1.jpg

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