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用于稳健监测铀污染及其微生物吸附剂筛选的温度稳健和比率型 G-四联体近邻 DNA 酶测定法。

Temperature-robust and ratiometric G-quadruplex proximate DNAzyme assay for robustly monitoring of uranium pollution and its microbial biosorbents screening.

机构信息

Institute of Nuclear Physics and Chemistry, China Academy of Engineering Physics, No. 64, Mianshan Road, Mianyang 621900, China.

College of Biomass Science and Engineering, Sichuan University, Chengdu 610065, China.

出版信息

J Hazard Mater. 2021 Jul 5;413:125383. doi: 10.1016/j.jhazmat.2021.125383. Epub 2021 Feb 11.

Abstract

Uranium pollution in environment and food chain is a serious threat to public security and human health. Herein, we proposed a temperature-robust, ratiometric, and label-free bioassay based on G-quadruplex proximate DNAzyme (G4DNAzyme), accommodating us to precisely monitor uranium pollution and biosorption. The proximity of split G-quadruplex probes was proposed to sense UO-activated DNAzyme activity, thus eliminating the use of chemically labeled nucleic acid probes. And the simultaneous monitoring of G-quadruplex and double-stranded structures of DNAzyme probes contributed to a ratiometric and robust detection of UO. Particularly, the separation of enzymatic digestion and fluorescence monitoring endued a robust and highly responsive detection of UO upon the temperature of enzymatic digestion process ranged from 18° to 41 °C. Consequently, G4DNAzyme assay allowed a robust, label-free and ratiometric quantification of uranium. We demonstrated the feasibility of G4DNAzyme assay for estimating uranium pollution in water and aquatic product samples. Ultimately, G4DNAzyme assay was adopted to serve as the platform to screen bacterial species and conditions for uranium biosorption, promising its roles in uranium associated biosafety control.

摘要

铀污染在环境和食物链中对公共安全和人类健康构成了严重威胁。在此,我们提出了一种基于 G-四链体近邻 DNA 酶(G4DNAzyme)的温度稳健、比率和无标记的生物测定法,使我们能够精确监测铀污染和生物吸附。拟议的分裂 G-四链体探针的接近程度用于感测 UO 激活的 DNA 酶活性,从而消除了对化学标记核酸探针的使用。并且 DNA 酶探针的 G-四链体和双链结构的同时监测有助于 UO 的比率和稳健检测。特别是,酶消化和荧光监测的分离在酶消化过程的温度范围为 18°C 至 41°C 时赋予了 UO 的稳健和高响应检测。因此,G4DNAzyme 测定法允许对铀进行稳健、无标记和比率定量。我们证明了 G4DNAzyme 测定法在估计水中和水产样品中的铀污染的可行性。最终,G4DNAzyme 测定法被用作筛选细菌种类和条件进行铀生物吸附的平台,有望在与铀相关的生物安全控制中发挥作用。

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