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通过等离子体亲和三明治分析探测单个活细胞中转移 RNA 的 Queuosine 修饰。

Probing Queuosine Modifications of Transfer RNA in Single Living Cells via Plasmonic Affinity Sandwich Assay.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.

出版信息

Anal Chem. 2022 Sep 20;94(37):12828-12835. doi: 10.1021/acs.analchem.2c02784. Epub 2022 Sep 7.

Abstract

Queuosine (Q) modification on tRNA plays an essential role in protein synthesis, participating in many tRNA functions such as folding, stability, and decoding. Appropriate analytical tools for the measurement of tRNA Q modifications are essential for the exploration of new roles of Q-modified tRNAs and the rationalization of their exact mechanisms. However, conventional methods for Q modification analysis suffer from apparent disadvantages, such as destructive cells, tedious procedure, and low sensitivity, which much hamper in-depth studies of Q modification-related biological questions. In this study, we developed a new approach called plasmonic affinity sandwich assay that allows for facile and sensitive determination of Q-modified tRNAs in single living cells. This method relies on the combination of plasmon-enhanced Raman scattering detection, base-paring affinity in-cell microextraction, and a set of boronate affinity and molecularly imprinted labeling nanotags for selective recognition of individual Q modifications, including queuosine, galactosyl queuosine (Gal-Q), and mannosyl queuosine (Man-Q). The developed method exhibited high affinity extraction and high specificity recognition. It allowed for the measurement of tRNA Q modifications in not only Q-rich cultured tumor cells but also Q-deficient primary tumor cells. Usefulness of this approach for investigation of the change of the Q modification level in single cells under oxidative stress was demonstrated. Because of its significant advantages over conventional methods, this approach provides a promising analytical tool for the exploration of more roles of Q-modified tRNAs and elucidation of their mechanisms.

摘要

tRNA 上的 Queuosine(Q) 修饰在蛋白质合成中起着至关重要的作用,参与了许多 tRNA 的功能,如折叠、稳定性和解码。因此,开发用于测量 tRNA Q 修饰的适当分析工具对于探索新的 Q 修饰 tRNA 作用以及合理化其确切机制至关重要。然而,传统的 Q 修饰分析方法存在明显的缺点,如破坏性细胞、繁琐的程序和低灵敏度,这极大地阻碍了 Q 修饰相关生物学问题的深入研究。在这项研究中,我们开发了一种称为等离子体亲和夹心测定法的新方法,该方法可在单个活细胞中轻松且灵敏地测定 Q 修饰的 tRNA。该方法依赖于等离子体增强拉曼散射检测、细胞内碱基配对亲和微提取、一组硼亲和和分子印迹标记纳米标签的结合,用于选择性识别单个 Q 修饰,包括 Queuosine、半乳糖基 Queuosine (Gal-Q) 和甘露基 Queuosine (Man-Q)。所开发的方法表现出高亲和力提取和高特异性识别。它不仅可以测量富含 Q 的培养肿瘤细胞中的 tRNA Q 修饰,还可以测量 Q 缺乏的原代肿瘤细胞中的 tRNA Q 修饰。该方法在氧化应激下单个细胞中 Q 修饰水平变化的研究中的实用性得到了证明。由于其与传统方法相比具有显著优势,因此该方法为探索 Q 修饰 tRNA 的更多作用和阐明其机制提供了一种有前途的分析工具。

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