Fibril formation by mutational variants of human lysozyme is associated with a fatal form of hereditary non-neuropathic systemic amyloidosis. Defining the mechanistic details of lysozyme aggregation is of crucial importance for understanding the origin and progression of this disease and related misfolding conditions. In this study, we show that a biotin moiety can be introduced site-specifically at Lys33 of human lysozyme. We demonstrate, using biophysical techniques, that the structure and stability of the native-state of the protein are not detectably altered by this modification, and that the ability to form amyloid fibrils is unchanged. By taking advantage of biotin-avidin interactions, we show that super-resolution fluorescence micros...
The propensity of protein molecules to self-assemble into highly ordered, fibrillar aggregates lies ...
Studies of lysozyme have played a major role over several decades in defining the general principles...
Six variants of human lysozyme (single-point mutations I56T, F57I, W64R, D67H and double mutations ...
Fibril formation by mutational variants of human lysozyme is associated with a fatal form of heredit...
Fibril formation by mutational variants of human lysozyme is associated with a fatal form of heredit...
Studies of lysozyme have played a major role over several decades in defining the general principles...
We report here the detailed characterisation of a non-naturally occurring variant of human lysozyme,...
Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropath...
Six variants of human lysozyme (single-point mutatants I56T, F57I, W64R, D67H and double mutants F57...
The aggregation process of wild-type human lysozyme at pH 3.0 and 60 °C has been analyzed by charact...
AbstractA natural mutant of human lysozyme, D67H, causes hereditary systemic nonneuropathic amyloido...
Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropathi...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
Identifying the cause of the cytotoxicity of species populated during amyloid formation is crucial t...
AbstractIdentifying the cause of the cytotoxicity of species populated during amyloid formation is c...
The propensity of protein molecules to self-assemble into highly ordered, fibrillar aggregates lies ...
Studies of lysozyme have played a major role over several decades in defining the general principles...
Six variants of human lysozyme (single-point mutations I56T, F57I, W64R, D67H and double mutations ...
Fibril formation by mutational variants of human lysozyme is associated with a fatal form of heredit...
Fibril formation by mutational variants of human lysozyme is associated with a fatal form of heredit...
Studies of lysozyme have played a major role over several decades in defining the general principles...
We report here the detailed characterisation of a non-naturally occurring variant of human lysozyme,...
Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropath...
Six variants of human lysozyme (single-point mutatants I56T, F57I, W64R, D67H and double mutants F57...
The aggregation process of wild-type human lysozyme at pH 3.0 and 60 °C has been analyzed by charact...
AbstractA natural mutant of human lysozyme, D67H, causes hereditary systemic nonneuropathic amyloido...
Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropathi...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
Identifying the cause of the cytotoxicity of species populated during amyloid formation is crucial t...
AbstractIdentifying the cause of the cytotoxicity of species populated during amyloid formation is c...
The propensity of protein molecules to self-assemble into highly ordered, fibrillar aggregates lies ...
Studies of lysozyme have played a major role over several decades in defining the general principles...
Six variants of human lysozyme (single-point mutations I56T, F57I, W64R, D67H and double mutations ...