It is known that protein misfolding is governed by the hydrophobic effect of solutes at hydrophobic amino acid side chains. The hydrophobic force of nonaqueous solutes acts as a driving force for the spatial rearrangement of protein side chains, whose structural transitions need to be regulated in both time and space. Smaller hydrophobic solutes exert more effect at protein side chains, which involves the clustering of proteins into misfolded shapes. The consequences of misfolding are loss of protein function, gain of toxic function, or both. This is a physical process, whose result has been directly linked to a large number of human diseases
Intrinsically disordered proteins are an emerging class of proteins that contain no secondary or ter...
Life is a non-equilibrium phenomenon. Owing to their high free energy content, the macromolecules of...
Going down the folding funnel, proteins may sample a wide variety of conformations, some being outri...
It is known that protein misfolding is governed by the hydrophobic effect of solutes at hydrophobic ...
It is commonly accepted that water plays an essential role in determining both the stability of the ...
Abstract. It is commonly accepted that water plays an essential role in determining both the stabili...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
Identifying the forces that drive proteins to misfold and aggregate, rather than to fold into their ...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
The essential involvement of water in most fundamental extra-cellular and intracellular processes of...
Organisms that thrive under extreme conditions, such as high salt concentration, low pH, or high tem...
Protein folding, misfolding and aggregation, as well as the way misfolded and aggregated proteins af...
In the last few years, hydrostatic pressure has been extensively used in the study of both protein f...
Solvation and hydrophobicity drive many critical processes in nature, playing an important role in t...
P(論文)Protein has a hydrophobic surface within its molecule, therefor the protein molecule dissolved ...
Intrinsically disordered proteins are an emerging class of proteins that contain no secondary or ter...
Life is a non-equilibrium phenomenon. Owing to their high free energy content, the macromolecules of...
Going down the folding funnel, proteins may sample a wide variety of conformations, some being outri...
It is known that protein misfolding is governed by the hydrophobic effect of solutes at hydrophobic ...
It is commonly accepted that water plays an essential role in determining both the stability of the ...
Abstract. It is commonly accepted that water plays an essential role in determining both the stabili...
The hydrophobic effect is a major driving force in protein folding. A complete understanding of this...
Identifying the forces that drive proteins to misfold and aggregate, rather than to fold into their ...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
The essential involvement of water in most fundamental extra-cellular and intracellular processes of...
Organisms that thrive under extreme conditions, such as high salt concentration, low pH, or high tem...
Protein folding, misfolding and aggregation, as well as the way misfolded and aggregated proteins af...
In the last few years, hydrostatic pressure has been extensively used in the study of both protein f...
Solvation and hydrophobicity drive many critical processes in nature, playing an important role in t...
P(論文)Protein has a hydrophobic surface within its molecule, therefor the protein molecule dissolved ...
Intrinsically disordered proteins are an emerging class of proteins that contain no secondary or ter...
Life is a non-equilibrium phenomenon. Owing to their high free energy content, the macromolecules of...
Going down the folding funnel, proteins may sample a wide variety of conformations, some being outri...