Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to undergo liquid-liquid phase separation (LLPS) on demand is not only highly desirable, but can also help to elucidate which protein features are important for LLPS. Here, we propose a computational method that couples a genetic algorithm to a sequence-dependent coarse-grained protein model to evolve the amino-acid sequences of phase-separating intrinsically disordered protein regions (IDRs), and purposely enhance or inhibit their capacity to phase-separate. We validate the predicted critical solution temperatures of the mutated sequences with ABSINTH, a more accurate all-atom model. We apply the algorithm to the phase-separating IDRs of three...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Intracellular compartmentalization of biomolecules into non-membrane-bound compartments, commonly re...
Biomolecular condensates, physically underpinned to a significant extent by liquid-liquid phase sepa...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
Proteins such as FUS phase separate to form liquid-like condensates that can harden into less dynami...
Membraneless organelles important to intracellular compartmentalization have recently been shown to ...
The liquid–liquid phase separation (LLPS) of intrinsically disordered proteins (IDPs) is a commonly ...
Intracellular phase separation of proteins into biomolecular condensates is increasingly recognised ...
The phenomenon of protein phase separation, which underlies the formation of biomolecular condensate...
We determine the intrinsically disordered regions (IDRs) of phase separating proteins and investigat...
Many proteins have been shown to function via liquid-liquid phase separation. Computational modeling...
Many proteins have been shown to function via liquid-liquid phase separation. Computational modeling...
Uncovering the sequence-encoded molecular grammar that governs the liquid–liquid phase separation (L...
Many intrinsically disordered proteins (IDPs) may undergo liquid-liquid phase separation (LLPS) and ...
According to Anfinsen’s structure-function postulate, the ability of linear chains of amino acids to...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Intracellular compartmentalization of biomolecules into non-membrane-bound compartments, commonly re...
Biomolecular condensates, physically underpinned to a significant extent by liquid-liquid phase sepa...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
Proteins such as FUS phase separate to form liquid-like condensates that can harden into less dynami...
Membraneless organelles important to intracellular compartmentalization have recently been shown to ...
The liquid–liquid phase separation (LLPS) of intrinsically disordered proteins (IDPs) is a commonly ...
Intracellular phase separation of proteins into biomolecular condensates is increasingly recognised ...
The phenomenon of protein phase separation, which underlies the formation of biomolecular condensate...
We determine the intrinsically disordered regions (IDRs) of phase separating proteins and investigat...
Many proteins have been shown to function via liquid-liquid phase separation. Computational modeling...
Many proteins have been shown to function via liquid-liquid phase separation. Computational modeling...
Uncovering the sequence-encoded molecular grammar that governs the liquid–liquid phase separation (L...
Many intrinsically disordered proteins (IDPs) may undergo liquid-liquid phase separation (LLPS) and ...
According to Anfinsen’s structure-function postulate, the ability of linear chains of amino acids to...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Intracellular compartmentalization of biomolecules into non-membrane-bound compartments, commonly re...
Biomolecular condensates, physically underpinned to a significant extent by liquid-liquid phase sepa...