Patients with the depigmentation disorder vitiligo have low catalase expression/activities and constantly accumulate 10−3M hydrogen peroxide (H2O2) in their skin. Such high concentrations of H2O2 oxidize L-methionine residues in proteins and peptides to (R and S)-methionine sulfoxide diasteriomers. In vivo FT-Raman Spectroscopy revealed the presence of methionine sulfoxide in the depigmented skin of patients with active vitiligo. In normal healthy human skin, methionine sulfoxide reductases A and B specifically reduce methionine sulfoxides (S) and (R), respectively, back to L-methionine consequently repairing oxidatively damaged proteins and peptides. In this report, we show that the expression/activities of MSRA and MSRB are significantly ...
It has been shown in vivo that patients with the depigmentation disorder vitiligo accumulate hydro-g...
International audienceThe oxidized protein repair methionine sulfoxide reductase (Msr) system has be...
Oxidative stress due to increased epidermal levels of H(2)O(2) with consequent inhibition of catalas...
Patients with the depigmentation disorder vitiligo have low catalase expression/activities and const...
To date there is ample evidence that patients with vitiligo accumulate millimolar concentrations of ...
To date there is compelling in vitro and in vivo evidence for epidermal H2O2 accumulation in vitilig...
To date there is compelling in vitro and in vivo evidence for epidermal H2O2 accumulation in vitilig...
The human skin holds the capacity for autocrine processing of the proopiomelanocortin (POMC)-derived...
noNonsegmental vitiligo (NSV) is characterized by loss of inherited skin color. The cause of the dis...
Methionine residues in the structure of proteins and peptides are especially sensitive to oxidation ...
Recently, we reported that photoaging correlates well with the amount of oxidized protein accumulate...
Suction blister roofs taken from the involve and uninvolved epidermis of patients with vitiligo show...
noVitiligo is characterized by a mostly progressive loss of the inherited skin color. The cause of t...
noVitiligo is characterized by a progressive loss of inherited skin color. The cause of the disease ...
The human epidermis is especially vulnerable to oxidative stress, which in turn leads to oxidation o...
It has been shown in vivo that patients with the depigmentation disorder vitiligo accumulate hydro-g...
International audienceThe oxidized protein repair methionine sulfoxide reductase (Msr) system has be...
Oxidative stress due to increased epidermal levels of H(2)O(2) with consequent inhibition of catalas...
Patients with the depigmentation disorder vitiligo have low catalase expression/activities and const...
To date there is ample evidence that patients with vitiligo accumulate millimolar concentrations of ...
To date there is compelling in vitro and in vivo evidence for epidermal H2O2 accumulation in vitilig...
To date there is compelling in vitro and in vivo evidence for epidermal H2O2 accumulation in vitilig...
The human skin holds the capacity for autocrine processing of the proopiomelanocortin (POMC)-derived...
noNonsegmental vitiligo (NSV) is characterized by loss of inherited skin color. The cause of the dis...
Methionine residues in the structure of proteins and peptides are especially sensitive to oxidation ...
Recently, we reported that photoaging correlates well with the amount of oxidized protein accumulate...
Suction blister roofs taken from the involve and uninvolved epidermis of patients with vitiligo show...
noVitiligo is characterized by a mostly progressive loss of the inherited skin color. The cause of t...
noVitiligo is characterized by a progressive loss of inherited skin color. The cause of the disease ...
The human epidermis is especially vulnerable to oxidative stress, which in turn leads to oxidation o...
It has been shown in vivo that patients with the depigmentation disorder vitiligo accumulate hydro-g...
International audienceThe oxidized protein repair methionine sulfoxide reductase (Msr) system has be...
Oxidative stress due to increased epidermal levels of H(2)O(2) with consequent inhibition of catalas...