The liquid–liquid phase separation (LLPS) of intrinsically disordered proteins (IDPs) is a commonly observed phenomenon within the cell, and such condensates are also highly attractive for applications in biomaterials and drug delivery. A better understanding of the sequence-dependent thermoresponsive behavior is of immense interest as it will aid in the design of protein sequences with desirable properties and in the understanding of cellular response to heat stress. In this work, we use a transferable coarse-grained model to directly probe the sequence-dependent thermoresponsive phase behavior of IDPs. To achieve this goal, we develop a unique knowledge-based amino acid potential that accounts for the temperature-dependent effects on solv...
Biomolecular phase transitions play an important role in organizing cellular processes in space and ...
According to Anfinsen’s structure-function postulate, the ability of linear chains of amino acids to...
Intrinsically disordered proteins and protein regions (IDPs) represent around thirty percent of the ...
The formation and viscoelastic properties of condensates of intrinsically disordered proteins (IDPs)...
The formation and viscoelastic properties of condensates of intrinsically disordered proteins (IDPs)...
The formation and viscoelastic properties of condensates of intrinsically disordered proteins (IDPs)...
Membraneless organelles important to intracellular compartmentalization have recently been shown to ...
Intracellular compartmentalization of biomolecules into non-membrane-bound compartments, commonly re...
We determine the intrinsically disordered regions (IDRs) of phase separating proteins and investigat...
Biomolecular condensates, physically underpinned to a significant extent by liquid-liquid phase sepa...
A number of intrinsically disordered proteins have been shown to self-assemble via liquid–liquid pha...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
Many intrinsically disordered proteins (IDPs) may undergo liquid-liquid phase separation (LLPS) and ...
Liquid-liquid phase separation (LLPS) of some IDPs/IDRs can lead to the formation of the membraneles...
Biomolecular phase transitions play an important role in organizing cellular processes in space and ...
According to Anfinsen’s structure-function postulate, the ability of linear chains of amino acids to...
Intrinsically disordered proteins and protein regions (IDPs) represent around thirty percent of the ...
The formation and viscoelastic properties of condensates of intrinsically disordered proteins (IDPs)...
The formation and viscoelastic properties of condensates of intrinsically disordered proteins (IDPs)...
The formation and viscoelastic properties of condensates of intrinsically disordered proteins (IDPs)...
Membraneless organelles important to intracellular compartmentalization have recently been shown to ...
Intracellular compartmentalization of biomolecules into non-membrane-bound compartments, commonly re...
We determine the intrinsically disordered regions (IDRs) of phase separating proteins and investigat...
Biomolecular condensates, physically underpinned to a significant extent by liquid-liquid phase sepa...
A number of intrinsically disordered proteins have been shown to self-assemble via liquid–liquid pha...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
Many intrinsically disordered proteins (IDPs) may undergo liquid-liquid phase separation (LLPS) and ...
Liquid-liquid phase separation (LLPS) of some IDPs/IDRs can lead to the formation of the membraneles...
Biomolecular phase transitions play an important role in organizing cellular processes in space and ...
According to Anfinsen’s structure-function postulate, the ability of linear chains of amino acids to...
Intrinsically disordered proteins and protein regions (IDPs) represent around thirty percent of the ...