We report here the detailed characterisation of a non-naturally occurring variant of human lysozyme, I59T, which possesses a destabilising point mutation at the interface of the alpha- and beta-domains. Although more stable in its native structure than the naturally occurring variants that give rise to a familial form of systemic amyloidosis, I59T possesses many attributes that are similar to these disease-associated species. In particular, under physiologically relevant conditions, I59T populates transiently an intermediate in which a region of the structure unfolds cooperatively; this loss of global cooperativity has been suggested to be a critical feature underlying the amyloidogenic nature of the disease-associated lysozyme variants. In...
Studies of lysozyme have played a major role over several decades in defining the general principles...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
We report here the detailed characterisation of a non-naturally occurring variant of human lysozyme,...
The structures and dynamics of the native states of two mutational variants of human lysozyme, I56T ...
Hydrogen exchange experiments monitored by NMR and mass spectrometry reveal that the amyloidogenic D...
One of the 20 or so human amyloid diseases is associated with the deposition in vital organs of full...
Six variants of human lysozyme (I56T, F57I, W64R, D67H, F57I/T70N and W112R/T70N) are associated wit...
Tissue deposition of soluble proteins as amyloid fibrils underlies a range of fatal diseases. The tw...
The conversion of human lysozyme into amyloid fibrils is associated with a rare but fatal hereditary...
Tissue deposition of soluble proteins as amyloid fibrils underlies a range of fatal diseases. The tw...
Definition of the transition mechanism from the native globular protein into fibrillar polymer was g...
The conversion of human lysozyme into amyloid fibrils is associated with a rare but fatal hereditary...
The unfolding and refolding properties of human lysozyme and two amyloidogenic variants (Ile56Thr an...
Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropathi...
Studies of lysozyme have played a major role over several decades in defining the general principles...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
We report here the detailed characterisation of a non-naturally occurring variant of human lysozyme,...
The structures and dynamics of the native states of two mutational variants of human lysozyme, I56T ...
Hydrogen exchange experiments monitored by NMR and mass spectrometry reveal that the amyloidogenic D...
One of the 20 or so human amyloid diseases is associated with the deposition in vital organs of full...
Six variants of human lysozyme (I56T, F57I, W64R, D67H, F57I/T70N and W112R/T70N) are associated wit...
Tissue deposition of soluble proteins as amyloid fibrils underlies a range of fatal diseases. The tw...
The conversion of human lysozyme into amyloid fibrils is associated with a rare but fatal hereditary...
Tissue deposition of soluble proteins as amyloid fibrils underlies a range of fatal diseases. The tw...
Definition of the transition mechanism from the native globular protein into fibrillar polymer was g...
The conversion of human lysozyme into amyloid fibrils is associated with a rare but fatal hereditary...
The unfolding and refolding properties of human lysozyme and two amyloidogenic variants (Ile56Thr an...
Human lysozyme variants form amyloid fibrils in individuals suffering from a familial non-neuropathi...
Studies of lysozyme have played a major role over several decades in defining the general principles...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...
The partial unfolding of human lysozyme underlies its conversion from the soluble state into amyloid...