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用于细胞生物分子单分子定位成像的核酸探针。

Nucleic Acid Probes for Single-Molecule Localization Imaging of Cellular Biomolecules.

作者信息

Wei Junyuan, Ji Cailing, Wang Yingfei, Tan Jie, Yuan Quan, Tan Weihong

机构信息

Molecular Science and Biomedicine Laboratory (MBL), State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, China.

出版信息

Chem Biomed Imaging. 2023 Apr 14;1(1):18-29. doi: 10.1021/cbmi.3c00012. eCollection 2023 Apr 24.

Abstract

Endogenous biomolecules in cells are the basis of all life activities. Directly visualizing the structural characteristics and dynamic behaviors of cellular biomolecules is significant for understanding the molecular mechanisms in various biological processes. Single-molecule localization microscopy (SMLM) can circumvent the optical diffraction limit, achieving analysis of the fine structures and biological processes in living cells with nanoscale resolution. However, the large size of traditional imaging probes prevents SMLM from accurately locating fine structures and densely distributed biomolecules within cells. In recent years, nucleic acid probes have emerged as potential tools to replace conventional SMLM probes by virtue of their small size and high specificity. In addition, due to their programmability, nucleic acid probes with different conformations can be constructed via sequence design, further extending the application of SMLM in bioanalysis. Here, we discuss the design concepts of different conformational nucleic acid probes for SMLM and summarize the application of SMLM based on nucleic acid probes in the field of biomolecules. Furthermore, we provide a summary and future perspectives of the nucleic acid probe-based SMLM technology, aiming to provide guidance for the acquisition of nanoscale information about cellular biological processes.

摘要

细胞内的内源性生物分子是所有生命活动的基础。直接可视化细胞生物分子的结构特征和动态行为对于理解各种生物过程中的分子机制具有重要意义。单分子定位显微镜(SMLM)可以规避光学衍射极限,实现对活细胞中精细结构和生物过程的纳米级分辨率分析。然而,传统成像探针的大尺寸阻碍了SMLM对细胞内精细结构和密集分布的生物分子进行准确定位。近年来,核酸探针凭借其小尺寸和高特异性,成为替代传统SMLM探针的潜在工具。此外,由于其可编程性,可以通过序列设计构建不同构象的核酸探针,进一步拓展了SMLM在生物分析中的应用。在此,我们讨论用于SMLM的不同构象核酸探针的设计理念,并总结基于核酸探针的SMLM在生物分子领域的应用。此外,我们对基于核酸探针的SMLM技术进行了总结并展望了其未来发展,旨在为获取细胞生物过程的纳米级信息提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42a7/11504121/f7b9f0ba1088/im3c00012_0001.jpg

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