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Research data in support of "Internal Phase Separation in Synthetic DNA Condensates"


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Description

Data to support paper 'Internal phase separation in synthetic DNA condensates'. Each folder for main figures (1-6) is accompanied by a corresponding README file.

  1. Confocal micrographs for DNA condensates with equal parts of A to B nanostars.
  2. Confocal micrographs for DNA condensates with all ratios of A to B tested.
  3. Images of condensates selected for analysis (highlighted) and resulting measurements of partition coefficients, contact angles, and interfacial tension ratios.
  4. Epifluorescence micrographs and measurements of mean fluorescence intensity, standard deviation of fluorescence intensity, and melting temperatures for experiments of melting and annealing DNA condensates.
  5. Confocal micrographs for DNA condensates annealed with different protocols.
  6. Images of condensates annealed under different conditions selected for analysis (highlighted) and resulting measurements of partition coefficients, contact angles, and interfacial tension ratios.

Version

Software / Usage instructions

Image analysis and processing was carried out in MATLAB. Plots were generated using MATLAB and PYTHON. Microscopy images (.tif and .lif) can be opened using Fiji.

Publisher

Rights and licensing

Except where otherwised noted, this item's license is described as https://creativecommons.org/licenses/by/4.0/
Sponsorship
BBSRC (BB/X010228/1)
Royal Society (URF\R\221009)
L.D.M., D.A.T. and L.M. acknowledge support from the European Research Council (ERC) under the Horizon 2020 research and innovation programme (ERC-STG No 851667 - NANOCELL). L.D.M. acknowledges support from a Royal Society University Research Fellowship (UF160152, URF\R\221009). R.R.S. acknowledges funding from the Biotechnology and Biological Sciences Research Council through a BBSRC Discovery Fellowship (BB/X010228/1). E.F. and D.O. acknowledge support from the U.S. National Science Foundation (NSF) grant FMRG: Bio award 2134772, by the Alfred Sloan Foundation through awards G-2021-16831 and G-2024-22575.