Studying pathogenic effects of amyloids requires homogeneous amyloidogenic peptide samples. Recombinant production of these peptides is challenging due to their susceptibility to aggregation and chemical modifications. Thus, chemical synthesis is primarily used to produce amyloidogenic peptides suitable for high-resolution structural studies. Here, we exploited the shielded environment of protein condensates formed via liquid-liquid phase separation (LLPS) as a protective mechanism against premature aggregation. We designed a fusion protein tag undergoing LLPS in Escherichia coli and linked it to highly amyloidogenic peptides, including β amyloids. We find that the fusion proteins form membraneless organelles during overexpression and remai...
Biomolecular condensates present in cells can fundamentally affect the aggregation of amyloidogenic ...
Biomolecular self-assembly based on peptides and proteins is a general phenomenon encountered in nat...
Multivalent interactions are a major driving force behind protein liquid-liquid phase separation. Pr...
Funding Information: This research was funded by the Singapore Ministry of Education (MOE) through a...
Biological materials represent a major source of inspiration to engineer protein-based polymers that...
Studying liquid-liquid phase separation (LLPS) of proteins provides key insights into the biogenesis...
The liquid–liquid phase separation (LLPS) of proteins has been found ubiquitously in eukaryotic cell...
Human islet amyloid polypeptide (IAPP) is the major component of pancreatic amyloid deposits in type...
Similar to other polypeptides and electrolytes, proteins undergo phase transitions, obeying physicoc...
The Alzheimer's disease related peptide, Amyloid-beta (Aβ)1-40 and 1-42, has proven difficult to be ...
Recombinant expression and purification of amyloid peptides represents a common basis for investigat...
Liquid-liquid phase separation (LLPS) has emerged as a key mechanism for intracellular organization,...
Compartmentalization allows for the spatial organization of cellular components and is crucial for n...
Protein precipitation is a process commonly observed during bacterial expression of heterologous pro...
Peptides have recently attracted interest as building blocks for the assembly of novel functional ma...
Biomolecular condensates present in cells can fundamentally affect the aggregation of amyloidogenic ...
Biomolecular self-assembly based on peptides and proteins is a general phenomenon encountered in nat...
Multivalent interactions are a major driving force behind protein liquid-liquid phase separation. Pr...
Funding Information: This research was funded by the Singapore Ministry of Education (MOE) through a...
Biological materials represent a major source of inspiration to engineer protein-based polymers that...
Studying liquid-liquid phase separation (LLPS) of proteins provides key insights into the biogenesis...
The liquid–liquid phase separation (LLPS) of proteins has been found ubiquitously in eukaryotic cell...
Human islet amyloid polypeptide (IAPP) is the major component of pancreatic amyloid deposits in type...
Similar to other polypeptides and electrolytes, proteins undergo phase transitions, obeying physicoc...
The Alzheimer's disease related peptide, Amyloid-beta (Aβ)1-40 and 1-42, has proven difficult to be ...
Recombinant expression and purification of amyloid peptides represents a common basis for investigat...
Liquid-liquid phase separation (LLPS) has emerged as a key mechanism for intracellular organization,...
Compartmentalization allows for the spatial organization of cellular components and is crucial for n...
Protein precipitation is a process commonly observed during bacterial expression of heterologous pro...
Peptides have recently attracted interest as building blocks for the assembly of novel functional ma...
Biomolecular condensates present in cells can fundamentally affect the aggregation of amyloidogenic ...
Biomolecular self-assembly based on peptides and proteins is a general phenomenon encountered in nat...
Multivalent interactions are a major driving force behind protein liquid-liquid phase separation. Pr...