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金属催化的水溶液中 RNA 的水解。

Metal-Catalyzed Hydrolysis of RNA in Aqueous Environments.

机构信息

Department of Energy, Environmental & Chemical Engineering, Washington University in St. Louis, St. Louis, Missouri 63130, United States.

出版信息

Environ Sci Technol. 2022 Mar 15;56(6):3564-3574. doi: 10.1021/acs.est.1c08468. Epub 2022 Feb 28.

Abstract

The stability of RNA in aqueous systems is critical for multiple environmental applications including evaluating the environmental fate of RNA interference pesticides and interpreting viral genetic marker abundance for wastewater-based epidemiology. In addition to biological processes, abiotic reactions may also contribute to RNA loss. In particular, some metals are known to dramatically accelerate rates of RNA hydrolysis under certain conditions (i.e., 37 °C or higher temperatures, 0.15-100 mM metal concentrations). In this study, we investigated the extent to which metals catalyze RNA hydrolysis under environmentally relevant conditions. At ambient temperature, neutral pH, and ∼10 μM metal concentrations, we determined that metals that are stronger Lewis acids (i.e., lead, copper) catalyzed single-stranded (ss)RNA, whereas metals that are weaker Lewis acids (i.e., zinc, nickel) did not. In contrast, double-stranded (ds)RNA resisted hydrolysis by all metals. While lead and copper catalyzed ssRNA hydrolysis at ambient temperature and neutral pH values, other factors such as lowering the solution pH and including inorganic and organic ligands reduced the rates of these reactions. Considering these factors along with sub-micromolar metal concentrations typical of environmental systems, we determined that both ssRNA and dsRNA are unlikely to undergo significant metal-catalyzed hydrolysis in most environmental aqueous systems.

摘要

RNA 在水相体系中的稳定性对于多种环境应用至关重要,包括评估 RNA 干扰农药的环境归宿以及解释废水中基于病毒遗传标记的丰度用于流行病学研究。除了生物过程外,非生物反应也可能导致 RNA 的损失。特别是,已知某些金属在某些条件下(即 37°C 或更高温度、0.15-100mM 金属浓度)会显著加速 RNA 水解的速率。在本研究中,我们研究了金属在环境相关条件下促进 RNA 水解的程度。在环境温度、中性 pH 值和约 10μM 金属浓度下,我们发现更强的路易斯酸金属(即铅、铜)催化了单链(ss)RNA 的水解,而较弱的路易斯酸金属(即锌、镍)则没有。相比之下,双链(ds)RNA 抵抗所有金属的水解。虽然铅和铜在环境温度和中性 pH 值下催化了 ssRNA 的水解,但其他因素,如降低溶液 pH 值以及包括无机和有机配体,会降低这些反应的速率。考虑到这些因素以及环境系统中典型的亚微米级金属浓度,我们确定在大多数环境水相体系中,ssRNA 和 dsRNA 都不太可能经历显著的金属催化水解。

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