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Acidification of the Oxygen Scavenging System in Single-Molecule Fluorescence Studies: In Situ Sensing with a Ratiometric Dual-Emission Probe

机译:单分子荧光研究中除氧系统的酸化:比率双发射探针的原位传感

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摘要

For most of the single-molecule fluorescence studies to date, biomolecules of interest are labeled with small organic dyes which suffer from their limited photostability evidenced by blinking and photobleaching. An enzymatic oxygen scavenging system of glucose oxidase and catalase is widely used to improve the dye photostability but with the unfavorable side effect of producing gluconic acid. It is known that accumulation of this byproduct in solution can lead to considerable acidification, but the uncertainty in its severity under experimentally relevant conditions has been a long-standing area of concern due to the lack of a suitable assay. In this paper we report a fluorescence-based analytical assay for quantitatively assessing the acidification of oxygen scavenging systems in situ. By using a ratiometric, dual-emission dye, SNARF-1, we observed the presence and, for the first time, measured the severity of solution acidification due to the oxygen scavenging system for a number of conditions relevant to single-molecule studies. On the basis of the quantitative analysis of the acidification profile under these conditions, practical guidelines for optimizing the oxygen scavenging system are provided. This in situ assay should be applicable to a large variety of future single-molecule fluorescence studies.
机译:迄今为止,对于大多数单分子荧光研究,感兴趣的生物分子都用小的有机染料标记,这些有机染料的眨眼和光漂白证明其有限的光稳定性。葡萄糖氧化酶和过氧化氢酶的酶促氧清除系统被广泛用于提高染料的光稳定性,但是具有产生葡萄糖酸的不利副作用。已知该副产物在溶液中的积累可导致相当大的酸化,但是由于缺乏合适的测定方法,在实验相关条件下其严重性的不确定性已成为长期关注的领域。在本文中,我们报告了一种基于荧光的分析方法,用于定量评估就地除氧系统的酸化程度。通过使用比例计量,双发射染料SNARF-1,我们观察了存在的情况,并首次测量了在许多与单分子研究有关的条件下,由于除氧系统导致的溶液酸化的严重性。在这些条件下对酸化曲线进行定量分析的基础上,提供了优化除氧系统的实用指南。这种原位测定应适用于各种未来的单分子荧光研究。

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