Biophysical properties of plasma membranes are determined by a chemical structure of phospholipids, including saturation of fatty acids and charge of polar heads of these molecules. Phospholipids not only determine fluidity and plasticity of membranes but also play an important role in abrupt aggregation of misfolded proteins. In this study, we investigate the role of the charge of the most abundant phospholipids in the plasma membrane on the aggregation properties of the lysozyme. We found that the charge of phospholipids determines the aggregation rate of lysozyme and the morphology of the protein aggregates. However, the secondary structure and toxicity of these protein specimens are determined by the chemical nature rather than the char...
PublicationPhospholipids (PLs) with polyunsaturated acyl chains are extremely abundant in a few spec...
Aggregation of the amyloid-β (Aβ) protein and the formation of toxic aggregates are the possible pat...
Molecular level self-assembly/aggregation processes are common in biomolecular systems. Specifically...
Biophysical properties of plasma membranes are determined by a chemical structure of phospholipids, ...
The study of the interaction between lipid membranes and amyloidogenic peptides is a turning point f...
AbstractElectrostatic interactions between negatively charged membranes and basic peptides/protein d...
A pathological hallmark of more than 20 human diseases including Alzheimer’s disease, Pa...
Fatty molecules, so-called lipids, form the basis of the biological membrane that surrounds and prot...
In this paper, we discuss amyloidogenic proteins, their misfolding, resulting structures, and intera...
AbstractThe activities of integral membrane proteins are often affected by the structures of the lip...
Amyloid- β aggregates play a causative role in Alzheimer’s disease. These aggregates are a prod...
The molecular origins of Alzheimer's disease are associated with the aggregation of the amyloid-β pe...
A growing number of studies suggest that the formation of toxic oligomers, precursors of amyloid fib...
Lipid membranes play a fundamental role in the pathological development of protein misfolding diseas...
The activities of integral membrane proteins are often affected by the structures of the lipid molec...
PublicationPhospholipids (PLs) with polyunsaturated acyl chains are extremely abundant in a few spec...
Aggregation of the amyloid-β (Aβ) protein and the formation of toxic aggregates are the possible pat...
Molecular level self-assembly/aggregation processes are common in biomolecular systems. Specifically...
Biophysical properties of plasma membranes are determined by a chemical structure of phospholipids, ...
The study of the interaction between lipid membranes and amyloidogenic peptides is a turning point f...
AbstractElectrostatic interactions between negatively charged membranes and basic peptides/protein d...
A pathological hallmark of more than 20 human diseases including Alzheimer’s disease, Pa...
Fatty molecules, so-called lipids, form the basis of the biological membrane that surrounds and prot...
In this paper, we discuss amyloidogenic proteins, their misfolding, resulting structures, and intera...
AbstractThe activities of integral membrane proteins are often affected by the structures of the lip...
Amyloid- β aggregates play a causative role in Alzheimer’s disease. These aggregates are a prod...
The molecular origins of Alzheimer's disease are associated with the aggregation of the amyloid-β pe...
A growing number of studies suggest that the formation of toxic oligomers, precursors of amyloid fib...
Lipid membranes play a fundamental role in the pathological development of protein misfolding diseas...
The activities of integral membrane proteins are often affected by the structures of the lipid molec...
PublicationPhospholipids (PLs) with polyunsaturated acyl chains are extremely abundant in a few spec...
Aggregation of the amyloid-β (Aβ) protein and the formation of toxic aggregates are the possible pat...
Molecular level self-assembly/aggregation processes are common in biomolecular systems. Specifically...