The aggregation process of wild-type human lysozyme at pH3.0 and 60 degrees C has been analyzed by characterizing a series of distinct species formed on the aggregation pathway, specifically the amyloidogenic monomeric precursor protein, the oligomeric soluble prefibrillar aggregates, and the mature fibrils. Particular attention has been focused on the analysis of the structural properties of the oligomeric species, since recent studies have shown that the oligomers formed by lysozyme prior to the appearance of mature amyloid fibrils are toxic to cells. Here, soluble oligomers of human lysozyme have been analyzed by a range of techniques including binding to fluorescent probes such as thioflavin T and 1-anilino-naphthalene-8-sulfonate, Four...
Fibril formation by mutational variants of human lysozyme is associated with a fatal form of heredit...
The thermal aggregation of lysozyme has been analyzed in water/ethanol solutions at low pH to induce...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
The aggregation process of wild-type human lysozyme at pH 3.0 and 60 °C has been analyzed by charact...
Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropathi...
Human lysozyme (HuL) is a widely characterised protein whose mutational variants misfold, forming am...
We report on a kinetic study of the heat-induced aggregation process of lysozyme at physiological pH...
Ever since lysozyme was discovered by Fleming in 1922, this protein has emerged as a model for inves...
<div><p>Protein aggregation leading to formation of amyloid fibrils is a symptom of several diseases...
Protein aggregation leading to formation of amyloid fibrils is a symptom of several diseases like Al...
Identifying the cause of the cytotoxicity of species populated during amyloid formation is crucial t...
Deposition of protein fibers with a characteristic cross-β sheet structure is the molecular marker a...
Reactive amyloid oligomers are responsible for cytotoxicity in amyloid pathologies and because of th...
AbstractIdentifying the cause of the cytotoxicity of species populated during amyloid formation is c...
Identifying the cause of the cytotoxicity of species populated during amyloid formation is crucial t...
Fibril formation by mutational variants of human lysozyme is associated with a fatal form of heredit...
The thermal aggregation of lysozyme has been analyzed in water/ethanol solutions at low pH to induce...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
The aggregation process of wild-type human lysozyme at pH 3.0 and 60 °C has been analyzed by charact...
Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropathi...
Human lysozyme (HuL) is a widely characterised protein whose mutational variants misfold, forming am...
We report on a kinetic study of the heat-induced aggregation process of lysozyme at physiological pH...
Ever since lysozyme was discovered by Fleming in 1922, this protein has emerged as a model for inves...
<div><p>Protein aggregation leading to formation of amyloid fibrils is a symptom of several diseases...
Protein aggregation leading to formation of amyloid fibrils is a symptom of several diseases like Al...
Identifying the cause of the cytotoxicity of species populated during amyloid formation is crucial t...
Deposition of protein fibers with a characteristic cross-β sheet structure is the molecular marker a...
Reactive amyloid oligomers are responsible for cytotoxicity in amyloid pathologies and because of th...
AbstractIdentifying the cause of the cytotoxicity of species populated during amyloid formation is c...
Identifying the cause of the cytotoxicity of species populated during amyloid formation is crucial t...
Fibril formation by mutational variants of human lysozyme is associated with a fatal form of heredit...
The thermal aggregation of lysozyme has been analyzed in water/ethanol solutions at low pH to induce...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...