Thiol-based regulatory switches play central roles in cellular responses to oxidative stress, nitrosative stress, and changes in the overall thiol-disulfide redox balance. Protein sulfhydryls offer a great deal of flexibility in the different types of modification they can undergo and the range of chemical signals they can perceive. For example, recent work on OhrR and OxyR has clearly established that disulfide bonds are not the only cysteine oxidation products that are likely to be relevant to redox sensing in vivo. Furthermore, different stresses can result in distinct modifications to the same protein; in OxyR it seems that distinct modifications can occur at the same cysteine, and in Yap1 a partner protein ensures that the disulfide bo...
Cysteines play an important role in protein biochemistry. The unique chemical property and high reac...
: Originally, small thiols, including glutathione, were viewed as protective antioxidants, acting as...
This review focuses on thiol/disulfide redox switches that regulate heme binding to proteins and mod...
AbstractCysteine residues, and in particular their thiolate groups, react not only with reactive oxy...
Cysteine residues, and in particular their thiolate groups, react not only with reactive oxygen spec...
International audienceBacteria possess the ability to adapt to changing environments. To enable this...
: Protein cysteines can undergo various forms of oxidation, some of them reversible (disulphide form...
Cellular compartments differ dramatically in their redox potentials. This translates directly into v...
The major function of disulfide bonds is not only the stabilization of protein structures. Over the ...
The molecular mechanisms underlying thiol-based redox control are poorly defined. Disulfide bonds be...
Oxidation is a double-edged sword for cellular processes and its role in normal physiology, cancer a...
Protein cysteine thiol status is a major determinant of oxidative stress and oxidant signaling. The ...
Abstract For many years, oxidative thiol modifications in cytosolic proteins were largely disregarde...
Oxidative stress affects a wide variety of different cellular processes. Now, an increasing number o...
Living organisms are subjected to oxidative stress conditions which are characterized by the product...
Cysteines play an important role in protein biochemistry. The unique chemical property and high reac...
: Originally, small thiols, including glutathione, were viewed as protective antioxidants, acting as...
This review focuses on thiol/disulfide redox switches that regulate heme binding to proteins and mod...
AbstractCysteine residues, and in particular their thiolate groups, react not only with reactive oxy...
Cysteine residues, and in particular their thiolate groups, react not only with reactive oxygen spec...
International audienceBacteria possess the ability to adapt to changing environments. To enable this...
: Protein cysteines can undergo various forms of oxidation, some of them reversible (disulphide form...
Cellular compartments differ dramatically in their redox potentials. This translates directly into v...
The major function of disulfide bonds is not only the stabilization of protein structures. Over the ...
The molecular mechanisms underlying thiol-based redox control are poorly defined. Disulfide bonds be...
Oxidation is a double-edged sword for cellular processes and its role in normal physiology, cancer a...
Protein cysteine thiol status is a major determinant of oxidative stress and oxidant signaling. The ...
Abstract For many years, oxidative thiol modifications in cytosolic proteins were largely disregarde...
Oxidative stress affects a wide variety of different cellular processes. Now, an increasing number o...
Living organisms are subjected to oxidative stress conditions which are characterized by the product...
Cysteines play an important role in protein biochemistry. The unique chemical property and high reac...
: Originally, small thiols, including glutathione, were viewed as protective antioxidants, acting as...
This review focuses on thiol/disulfide redox switches that regulate heme binding to proteins and mod...