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PEG 滑面的多次单分子测量再生。

Regeneration of PEG slide for multiple rounds of single-molecule measurements.

机构信息

Department of Biophysics, Johns Hopkins University, Baltimore, Maryland.

Department of Biophysics, Johns Hopkins University, Baltimore, Maryland; Physics Frontier Center (Center for Physics of Living Cells), University of Illinois, Urbana, Illinois; Howard Hughes Medical Institute, Johns Hopkins University, Baltimore, Maryland.

出版信息

Biophys J. 2021 May 4;120(9):1788-1799. doi: 10.1016/j.bpj.2021.02.031. Epub 2021 Mar 4.

Abstract

Single-molecule fluorescence detection of protein and other biomolecules requires a polyethylene glycol (PEG)-passivated surface. Individual channels on a PEG-passivated slide are typically used only a few times, limiting the number of experiments per slide. Here, we report several strategies for regenerating PEG surfaces for multiple rounds of experiments. First, we show regeneration of DNA- or RNA-tethered surfaces by washing out the bound protein by 0.1% sodium dodecyl sulfate, which is significantly more effective than 6 M urea, 6 M GdmCl, or 100 μM proteinase K. Strikingly, 10 consecutive experiments in five different systems produced indistinguishable results both in molecule count and protein activity. Second, duplexed DNA unwound by helicase or denatured by 50 mM NaOH was reannealed with a complementary strand to regenerate the duplexed substrate with an exceptionally high recovery rate. Third, the biotin-PEG layer was regenerated by using 7 M NaOH to strip off NeutrAvidin, which can be reapplied for additional experiments. We demonstrate five cycles of regenerating antibody immobilized surface by which three different protein activity was measured. Altogether, our methods represent reliable and reproducible yet simple and rapid strategies that will enhance the efficiency of single-molecule experiments.

摘要

单分子荧光检测蛋白质和其他生物分子需要聚乙二醇(PEG)钝化表面。PEG 钝化载玻片上的单个通道通常仅使用几次,限制了每张载玻片上的实验次数。在这里,我们报告了几种用于多次实验的 PEG 表面再生策略。首先,我们通过用 0.1%十二烷基硫酸钠冲洗掉结合的蛋白质来显示 DNA 或 RNA 键合表面的再生,这比 6 M 尿素、6 M GdmCl 或 100 μM 蛋白酶 K 更有效。引人注目的是,在五个不同系统中进行了 10 次连续实验,在分子计数和蛋白质活性方面都产生了可区分的结果。其次,通过解旋酶解开的双链 DNA 或用 50 mM NaOH 变性的双链 DNA 与互补链重新退火,以极高的回收率再生双链底物。第三,通过使用 7 M NaOH 剥离 NeutrAvidin 来再生生物素-PEG 层,该层可再次用于其他实验。我们展示了通过再生抗体固定表面进行的五个循环,其中测量了三种不同的蛋白质活性。总之,我们的方法代表了可靠、可重复但简单、快速的策略,将提高单分子实验的效率。

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