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构建可编程反馈网络,使用可连续激活的分子信标荧光,一步定量临床乳腺组织中的长非编码 RNA。

Construction of a Programmable Feedback Network with Continuously Activatable Molecular Beacon Fluorescence for One-Step Quantification of Long Noncoding RNAs in Clinical Breast Tissues.

机构信息

School of Chemistry and Chemical Engineering, Southeast University, Nanjing 211189, China.

Center for Disease Control and Prevention of Weihai City, Weihai 264200, China.

出版信息

Anal Chem. 2023 Nov 7;95(44):16343-16351. doi: 10.1021/acs.analchem.3c03575. Epub 2023 Oct 24.

Abstract

Long noncoding RNAs (lncRNAs) are key regulators in numerous pathological and physiological processes, and their aberrant expression is implicated in many diseases. Herein, we develop a programmable feedback network with continuously activatable molecular beacon (MB) fluorescence for one-step quantification of mammalian-metastasis-associated lung adenocarcinoma transcript 1 (lncRNA MALAT1) in clinical breast tissues. We introduce a functional MB with three domains, including a substrate for lncRNA MALAT1 recognition, a template for strand displacement amplification (SDA), and a reporter for signal output with FAM fluorescence being quenched by BHQ1. When MALAT1 is present, it recognizes and unfolds the MB, leading to the recovery of FAM fluorescence. Once the MB is opened, multiple rounds of SDA reaction are automatically initiated by recruiting primer, KF DNA polymerase, and Nt.BbvCI nicking enzyme, inducing the opening of more MBs and the dissociation of more FAM/BHQ1 pairs. Consequently, a feedback network is constructed through multicycle cascade SDA, achieving the exponential accumulation of fluorescence signals for accurate quantification of MALAT1. In this assay, only two oligonucleotides (i.e., MB and primer) are involved for the establishment of a feedback amplification network, greatly simplifying the design of the reaction system. Moreover, this assay requires only one step to realize the isothermal exponential amplification for real-time monitoring of MALAT1 with attomolar sensitivity. This assay displays single-base mismatch selectivity with high anti-interference capability, and it can further quantify endogenous MALAT1 at the single-cell level and differentiate MALAT1 expression between breast cancer patient tissues and healthy person tissues.

摘要

长链非编码 RNA(lncRNA)是许多病理和生理过程中的关键调节因子,其异常表达与许多疾病有关。在此,我们开发了一种可编程的反馈网络,该网络具有连续激活的分子信标(MB)荧光,可用于一步定量临床乳腺组织中的哺乳动物转移相关肺腺癌转录物 1(lncRNA MALAT1)。我们引入了一种具有三个结构域的功能性 MB,包括 lncRNA MALAT1 识别的底物、用于链置换扩增(SDA)的模板以及带有 FAM 荧光的报告子,该荧光被 BHQ1 猝灭。当 MALAT1 存在时,它会识别并展开 MB,从而恢复 FAM 荧光。一旦 MB 打开,就会通过招募引物、KF DNA 聚合酶和 Nt.BbvCI 切口酶自动启动多个 SDA 反应循环,从而引发更多 MB 的打开和更多 FAM/BHQ1 对的解离。因此,通过多循环级联 SDA 构建了一个反馈网络,实现了荧光信号的指数积累,从而实现了 MALAT1 的准确定量。在该测定中,仅涉及两个寡核苷酸(即 MB 和引物)来建立反馈放大网络,极大地简化了反应体系的设计。此外,该测定仅需一步即可实现等温指数扩增,从而实时监测 MALAT1 的单碱基错配具有高选择性和高抗干扰能力,并且可以进一步在单细胞水平上定量内源性 MALAT1,并区分乳腺癌患者组织和健康人组织中的 MALAT1 表达。

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