Understanding the dynamics of biomolecules in complex environments is crucial for elucidating the effect of condensed and heterogeneous environments on their functional properties. A relevant environment-and one that can also be mimicked easily in vitro-is that of phase-separated droplets. While phase-separated droplet systems have been shown to compartmentalize a wide range of functional biomolecules, the effects of internal structuration of droplets on the dynamics and mobility of internalized molecules remain poorly understood. Here, we use fluorescence correlation spectroscopy to measure the dynamics of short oligonucleotides encapsulated within two representative kinds of uncharged and charged phase-separated droplets. We find that the internal structuration controls the oligonucleotide dynamics in these droplets, revealed by measuring physical parameters at high spatiotemporal resolution. By varying oligonucleotide length and salt concentrations (and thereby charge screening), we found that the dynamics are significantly affected in the noncharged droplets compared to the charged system. Our work lays the foundation for unraveling and quantifying the physical parameters governing biomolecular transport in the condensed environment.
Constrained dynamics of DNA oligonucleotides in phase-separated droplets.
DNA寡核苷酸在相分离液滴中的受限动力学
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作者:Singh Anupam, Thutupalli Shashi, Kumar Manoj, Ameta Sandeep
| 期刊: | Biophysical Journal | 影响因子: | 3.100 |
| 时间: | 2024 | 起止号: | 2024 Jun 4; 123(11):1458-1466 |
| doi: | 10.1016/j.bpj.2023.12.025 | 研究方向: | 其它 |
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