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用于生物分子凝聚物高灵敏度研究的高级表面钝化。

Advanced surface passivation for high-sensitivity studies of biomolecular condensates.

机构信息

Department of Biophysics, HHMI, University of Texas Southwestern Medical Center, Dallas, TX 75390.

出版信息

Proc Natl Acad Sci U S A. 2024 May 28;121(22):e2403013121. doi: 10.1073/pnas.2403013121. Epub 2024 May 23.

Abstract

Biomolecular condensates are cellular compartments that concentrate biomolecules without an encapsulating membrane. In recent years, significant advances have been made in the understanding of condensates through biochemical reconstitution and microscopic detection of these structures. Quantitative visualization and biochemical assays of biomolecular condensates rely on surface passivation to minimize background and artifacts due to condensate adhesion. However, the challenge of undesired interactions between condensates and glass surfaces, which can alter material properties and impair observational accuracy, remains a critical hurdle. Here, we introduce an efficient, broadly applicable, and simple passivation method employing self-assembly of the surfactant Pluronic F127 (PF127). The method greatly reduces nonspecific binding across a range of condensates systems for both phase-separated droplets and biomolecules in dilute phase. Additionally, by integrating PF127 passivation with the Biotin-NeutrAvidin system, we achieve controlled multipoint attachment of condensates to surfaces. This not only preserves condensate properties but also facilitates long-time fluorescence recovery after photobleaching imaging and high-precision single-molecule analyses. Using this method, we have explored the dynamics of polySIM molecules within polySUMO/polySIM condensates at the single-molecule level. Our observations suggest a potential heterogeneity in the distribution of available polySIM-binding sites within the condensates.

摘要

生物分子凝聚物是没有包膜的细胞区室,可浓缩生物分子。近年来,通过生化重构和这些结构的微观检测,人们对凝聚物的理解取得了重大进展。生物分子凝聚物的定量可视化和生化分析依赖于表面钝化,以最小化由于凝聚物附着引起的背景和伪影。然而,凝聚物与玻璃表面之间不期望的相互作用的挑战仍然是一个关键的障碍,这种相互作用会改变材料特性并损害观测准确性。在这里,我们介绍了一种高效、广泛适用且简单的钝化方法,该方法采用表面活性剂 Pluronic F127(PF127)的自组装。该方法大大减少了多种凝聚物系统中非特异性结合,包括相分离液滴和稀相中生物分子。此外,通过将 PF127 钝化与生物素-中性亲和素系统相结合,我们实现了凝聚物到表面的多点控制附着。这不仅保留了凝聚物的特性,还便于光漂白后荧光恢复成像和高精度单分子分析。使用这种方法,我们在单分子水平上研究了多聚 SUMO/多聚 SIM 凝聚物中多 SIM 分子的动力学。我们的观察结果表明,凝聚物中可用多 SIM 结合位点的分布可能存在异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ece8/11145189/704bda000033/pnas.2403013121fig01.jpg

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