BIO In the literature: open

Mechanism of liquid-to-solid aging of condensates

In plain words

Some protein droplets slowly harden from liquid to gel or solid over hours, and in disease they can turn into fibers. What molecular process drives this hardening and sets its rate is unknown.

Precise statement

For FUS and hnRNPA1 condensates in vitro, viscosity and elastic modulus increase over hours (aging of a Maxwell fluid). Determine whether aging is driven by $\beta$-sheet formation and fibril nucleation inside the dense phase, by glass-like slowing of sticker exchange, or by both, and predict the aging time as a function of sequence and temperature.

What would settle it

Time-resolved rheology combined with structural probes of beta-sheet content on sequence variants, matched by a model that predicts aging times.

See also