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Mina Farag
Mina Farag
在 wustl.edu 的电子邮件经过验证
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引用次数
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年份
Valence and patterning of aromatic residues determine the phase behavior of prion-like domains
EW Martin, AS Holehouse, I Peran, M Farag, JJ Incicco, A Bremer, ...
Science 367 (6478), 694-699, 2020
7052020
Deciphering how naturally occurring sequence features impact the phase behaviours of disordered prion-like domains
A Bremer, M Farag, WM Borcherds, I Peran, EW Martin, RV Pappu, ...
Nature chemistry 14 (2), 196-207, 2022
2532022
Phase transitions of associative biomacromolecules
RV Pappu, SR Cohen, F Dar, M Farag, M Kar
Chemical Reviews 123 (14), 8945-8987, 2023
1092023
Condensates formed by prion-like low-complexity domains have small-world network structures and interfaces defined by expanded conformations
M Farag, SR Cohen, WM Borcherds, A Bremer, T Mittag, RV Pappu
Nature communications 13 (1), 7722, 2022
722022
Programmable synthetic biomolecular condensates for cellular control
Y Dai, M Farag, D Lee, X Zeng, K Kim, H Son, X Guo, J Su, N Peterson, ...
Nature chemical biology 19 (4), 518-528, 2023
382023
Phase separation of protein mixtures is driven by the interplay of homotypic and heterotypic interactions
M Farag, WM Borcherds, A Bremer, T Mittag, RV Pappu
Nature Communications 14 (1), 5527, 2023
342023
Macromolecular condensation organizes nucleolar sub-phases to set up a pH gradient
MR King, KM Ruff, AZ Lin, A Pant, M Farag, JM Lalmansingh, T Wu, ...
Cell 187 (8), 1889-1906. e24, 2024
152024
Quantifying coexistence concentrations in multi-component phase-separating systems using analytical HPLC
A Bremer, AE Posey, MB Borgia, WM Borcherds, M Farag, RV Pappu, ...
Biomolecules 12 (10), 1480, 2022
142022
Condensates of disordered proteins have small-world network structures and interfaces defined by expanded conformations
M Farag, SR Cohen, WM Borcherds, A Bremer, T Mittag, RV Pappu
bioRxiv, 2022.05. 21.492916, 2022
142022
Sequence-encoded grammars determine material properties and physical aging of protein condensates
I Alshareedah, WM Borcherds, SR Cohen, M Farag, A Singh, A Bremer, ...
bioRxiv, 2023.2004. 2006.535902, 2023
112023
FIREBALL: A tool to fit protein phase diagrams based on mean-field theories for polymer solutions
M Farag, AS Holehouse, X Zeng, RV Pappu
Biophysical Journal 122 (12), 2396-2403, 2023
92023
Adsorption of RNA to interfaces of biomolecular condensates enables wetting transitions
NA Erkamp, M Farag, D Qian, T Sneideris, TJ Welsh, H Ausserwöger, ...
BioRxiv, 2023.01. 12.523837, 2023
92023
Sequence-specific interactions determine viscoelasticity and ageing dynamics of protein condensates
I Alshareedah, WM Borcherds, SR Cohen, A Singh, AE Posey, M Farag, ...
Nature Physics, 1-10, 2024
82024
Single fluorogen imaging reveals spatial inhomogeneities within biomolecular condensates.
T Wu, MR King, M Farag, RV Pappu, MD Lew
Biorxiv: the Preprint Server for Biology, 2023
72023
Uncovering molecular grammars of intrinsically disordered regions that organize nucleolar fibrillar centers
MR King, AZ Lin, KM Ruff, M Farag, W Ouyang, MD Vahey, E Lundberg, ...
bioRxiv, 2022.11. 05.515292, 2022
72022
Phase separation in mixtures of prion-like low complexity domains is driven by the interplay of homotypic and heterotypic interactions
R Pappu, M Farag, W Borcherds, A Bremer, T Mittag
Research Square, 2023
62023
Single fluorogen imaging reveals distinct environmental and structural features of biomolecular condensates
T Wu, MR King, M Farag, RV Pappu, MD Lew
bioRxiv, 2023
32023
Metastable condensates suppress conversion to amyloid fibrils
T Das, F Zaidi, M Farag, KM Ruff, J Messing, JP Taylor, RV Pappu, ...
bioRxiv, 2024
12024
Sequence-specific interactions determine viscoelastic moduli and aging dynamics of protein condensates
I Alshareedah, W Borcherds, S Cohen, M Farag, A Singh, A Bremer, ...
12023
Dominant energetics in multi-component bio-molecular condensates
D Qian, H Ausserwoger, T Sneideris, M Farag, RV Pappu, TPJ Knowles
BioRxiv, 2023.06. 12.544666, 2023
12023
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