Back

Repulsion-Driven Layering in Polymer-Assisted Condensation

Majee, A.; Merlitz, H.; Schiessel, H.; Sommer, J.-U.

2026-05-12 biophysics
10.64898/2026.05.08.723821 bioRxiv
Show abstract

The hierarchical organization of multiphase biomolecular condensates into core-shell architectures is a fundamental problem in soft matter and biophysics. While classical explanations rely on hierarchies of interfacial tension ({gamma}) between coexisting liquids, the ultralow tensions of condensates (0.1-1 {micro}N/m) render such hierarchies potentially fragile. We introduce a robust assembly principle based on Polymer-Assisted Condensation (PAC), in which a single polymer species dictates the entire structure. The polymer nucleates a dense core by recruiting a condensation-incompetent protein (P1). A second incompetent protein (P2), which is repelled or otherwise thermodynamically disfavored from entering the polymer-rich core, is nonetheless recruited to the interface by weak attraction to P1, forming a stable shell. This effective repulsion-driven layering operates across a wide parameter space without requiring{gamma} asymmetries and yields a robust structure that is impervious to concentration fluctuations and environmental perturbations. Phase-field modeling and molecular simulations establish this mechanism and capture key features of nucleolar organization. Our work reveals a general physical pathway for encoding spatial order in soft, multicomponent fluids.

Matching journals

The top 5 journals account for 50% of the predicted probability mass.

1
Nature Physics
39 papers in training set
Top 0.1%
27.9%
2
Proceedings of the National Academy of Sciences
2130 papers in training set
Top 5%
10.2%
3
Nature Communications
4913 papers in training set
Top 28%
6.4%
4
The Journal of Physical Chemistry Letters
58 papers in training set
Top 0.3%
4.0%
5
Biophysical Journal
545 papers in training set
Top 2%
3.6%
50% of probability mass above
6
Physical Review Letters
43 papers in training set
Top 0.1%
3.6%
7
eLife
5422 papers in training set
Top 25%
3.6%
8
Journal of the American Chemical Society
199 papers in training set
Top 2%
3.3%
9
ACS Nano
99 papers in training set
Top 1%
3.1%
10
Nature Materials
21 papers in training set
Top 0.3%
2.9%
11
Physical Review X
23 papers in training set
Top 0.1%
2.4%
12
Advanced Science
249 papers in training set
Top 10%
1.8%
13
PRX Life
34 papers in training set
Top 0.3%
1.7%
14
Nano Letters
63 papers in training set
Top 2%
1.7%
15
Science Advances
1098 papers in training set
Top 17%
1.7%
16
Nucleic Acids Research
1128 papers in training set
Top 11%
1.7%
17
Nature Chemistry
34 papers in training set
Top 0.5%
1.5%
18
The Journal of Chemical Physics
49 papers in training set
Top 0.3%
1.5%
19
Communications Physics
12 papers in training set
Top 0.2%
1.3%
20
Chemical Science
71 papers in training set
Top 1%
1.2%
21
Physical Review Research
46 papers in training set
Top 0.6%
1.0%
22
The Journal of Physical Chemistry B
158 papers in training set
Top 2%
0.9%
23
Cell Reports
1338 papers in training set
Top 31%
0.9%
24
Cell Systems
167 papers in training set
Top 11%
0.8%
25
Nature Nanotechnology
30 papers in training set
Top 1%
0.6%
26
Journal of The Royal Society Interface
189 papers in training set
Top 6%
0.5%
27
Bulletin of Mathematical Biology
84 papers in training set
Top 2%
0.5%
28
Scientific Reports
3102 papers in training set
Top 80%
0.5%
29
PLOS Computational Biology
1633 papers in training set
Top 29%
0.5%
30
Science
429 papers in training set
Top 22%
0.5%