Skip to content

Author

Michele Monti

1 paper indexed here

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

Review Jul 2026

Physicochemical principles of RNA-mediated crowding.

Molecular crowding in cells is not solely a consequence of excluded volume but emerges from interaction networks shaped by RNA and proteins. Here we examine the physicochemical principles underlying RNA-mediated crowding, focusing on how sequence-driven multivalency, structural topology, and network connectivity govern molecular organization. Repeats, secondary structures, and higher-order motifs such as G-quadruplexes act as interaction modules that promote percolation and phase separation, while RNA length and concentration tune phase boundaries. These RNA-encoded features promote multivalent RNA-RNA and RNA-protein interactions that shape condensate assembly, dynamics, and organization across scales. In this framework, crowding emerges as an RNA-centered, interaction-driven property linking molecular features to mesoscale organization in both physiological and pathological contexts.

Jonathan Fiorentino, Michele Monti, Laura Broglia et al. · 0 citations