Class I fungal hydrophobins form amphipathic monolayers composed of amyloid rodlets. This is a remarkable case of functional amyloid formation in that a hydrophobic:hydrophilic interface is required to trigger the self-assembly of the proteins. The mechanism of rodlet formation and the role of the interface in this process have not been well understood. Here, we have studied the effect of a range of additives, including ionic liquids, alcohols, and detergents, on rodlet formation by two class I hydrophobins, EAS and DewA. Although the conformation of the hydrophobins in these different solutions is not altered, we observe that the rate of rodlet formation is slowed as the surface tension of the solution is decreased, regardless of the natur...
A variety of neurodegenerative diseases are associated with amyloid plaques, which begin as soluble ...
Hydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into...
Hydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into...
The hydrophobin EAS from the fungus Neurospora crassa forms functional amyloid fibrils called rodlet...
Hydrophobins are fungal proteins whose functions are mainly based on their capability to self-assemb...
Hydrophobins are fungal proteins whose functions are mainly based on their capability to self-assemb...
Hydrophobins are fungal proteins whose functions are mainly based on their capability to self-assemb...
Hydrophobins are small proteins secreted by fungi and which spontaneously assemble into amphipathic ...
Class I hydrophobins are fungal proteins that self-assemble into robust amphipathic rodlet monolayer...
International audienceHydrophobins are amphiphilic proteins secreted by filamentous fungi in a solub...
International audienceHydrophobins are amphiphilic proteins secreted by filamentous fungi in a solub...
Hydrophobins are fungal proteins that spontaneously self-assemble at hydrophobic/hydrophilic or air/...
The class I hydrophobin EAS is part of a family of small, amphiphilic fungal proteins best known for...
Many chronic degenerative diseases result from aggregation of misfolded polypeptides to form amyloid...
Many chronic degenerative diseases result from aggregation of misfolded polypeptides to form amyloid...
A variety of neurodegenerative diseases are associated with amyloid plaques, which begin as soluble ...
Hydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into...
Hydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into...
The hydrophobin EAS from the fungus Neurospora crassa forms functional amyloid fibrils called rodlet...
Hydrophobins are fungal proteins whose functions are mainly based on their capability to self-assemb...
Hydrophobins are fungal proteins whose functions are mainly based on their capability to self-assemb...
Hydrophobins are fungal proteins whose functions are mainly based on their capability to self-assemb...
Hydrophobins are small proteins secreted by fungi and which spontaneously assemble into amphipathic ...
Class I hydrophobins are fungal proteins that self-assemble into robust amphipathic rodlet monolayer...
International audienceHydrophobins are amphiphilic proteins secreted by filamentous fungi in a solub...
International audienceHydrophobins are amphiphilic proteins secreted by filamentous fungi in a solub...
Hydrophobins are fungal proteins that spontaneously self-assemble at hydrophobic/hydrophilic or air/...
The class I hydrophobin EAS is part of a family of small, amphiphilic fungal proteins best known for...
Many chronic degenerative diseases result from aggregation of misfolded polypeptides to form amyloid...
Many chronic degenerative diseases result from aggregation of misfolded polypeptides to form amyloid...
A variety of neurodegenerative diseases are associated with amyloid plaques, which begin as soluble ...
Hydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into...
Hydrophobins are small fungal proteins that self-assemble at hydrophilic/hydrophobic interfaces into...