An ideal tool for the study of cellular biology would enable the measure of molecular activity nondestructively within living cells. Single-molecule localization microscopy (SMLM) techniques, such as single-molecule tracking (SMT), enable in situ measurements in cells but have historically been limited by a necessary tradeoff between spatiotemporal resolution and throughput. Here we address these limitations using oblique line scan (OLS), a robust single-objective light-sheet-based illumination and detection modality that achieves nanoscale spatial resolution and sub-millisecond temporal resolution across a large field of view. We show that OLS can be used to capture protein motion up to 14âμm(2)âs(-1) in living cells. We further extend the utility of OLS with in-solution SMT for single-molecule measurement of ligand-protein interactions and disruption of protein-protein interactions using purified proteins. We illustrate the versatility of OLS by showcasing two-color SMT, STORM and single-molecule fluorescence recovery after photobleaching. OLS paves the way for robust, high-throughput, single-molecule investigations of protein function required for basic research, drug screening and systems biology studies.
Oblique line scan illumination enables expansive, accurate and sensitive single-protein measurements in solution and in living cells.
倾斜线扫描照明技术能够对溶液和活细胞中的单蛋白质进行广泛、准确和灵敏的测量
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作者:Driouchi Amine, Bretan Mason, Davis Brynmor J, Heckert Alec, Seeger Markus, Silva Maité Bradley, Forrest William S R, Hsiung Jessica, Tan Jiongyi, Yang Hongli, McSwiggen David T, Song Linda, Sule Askhay, Abaie Behnam, Chen Hanzhe, Chhun Bryant, Conroy Brianna, Elliott Liam A, Gonzalez Eric, Ilkov Fedor, Isaacs Joshua, Labaria George, Lagana Michelle, Larsen DeLaine D, Margolin Brian, Nguyen Mai K, Park Eugene, Rine Jeremy, Tang Yangzhong, Vana Martin, Wilkey Andrew, Zhang Zhengjian, Basham Stephen, Ho Jaclyn J, Johnson Stephanie, Klammer Aaron A, Lin Kevin, Darzacq Xavier, Betzig Eric, Berman Russell T, Anderson Daniel J
| 期刊: | Nature Methods | 影响因子: | 32.100 |
| 时间: | 2025 | 起止号: | 2025 Mar;22(3):559-568 |
| doi: | 10.1038/s41592-025-02594-6 | 研究方向: | 细胞生物学 |
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