The phenotypic features of the Azotobacter vinelandii RhdA mutant MV474 (in which the rhdA gene was deleted) indicated that defects in antioxidant systems in this organism were related to the expression of the tandem-domain rhodanese RhdA. In this work, further insights on the effects of the oxidative imbalance generated by the absence of RhdA (e.g. increased levels of lipid hydroperoxides) are provided. Starting from the evidence that glutathione was depleted in MV474, and using both in silico and in vitro approaches, here we studied the interaction of wild-type RhdA and Cys230Ala site-directed RhdA mutant with glutathione species. We found that RhdA was able to bind in vitro reduced glutathione (GSH) and that RhdA-Cys230 residue was manda...
AbstractAfter heterologous expression in Escherichia coli, the Azotobacter vinelandii rhodanese RhdA...
AbstractAzotobacter vinelandii RhdA uses thiosulfate as the only sulfur donor in vitro, and this app...
International audienceFrom bacteria to plants and humans, the glutathione system plays a pleiotropic...
<div><p>The phenotypic features of the <em>Azotobacter vinelandii</em> RhdA mutant MV474 (in which t...
The phenotypic features of the Azotobacter vinelandii RhdA mutant MV474 (in which the rhdA gene was ...
An increasing number of studies correlated the expression of rhodanese-like proteins to the manageme...
International audienceThe rhdA gene of Azotobacter vinelandii codes for a rhodanese-domain protein (...
The tandem domain rhodanese-homology protein RhdA of Azotobacter vinelandii shows an active-site loo...
The subjects of the present investigation were A. vinelandii RhdA and E.coli SseA, that in the rhoda...
AbstractIn Azotobacter vinelandii the rhdA gene codes for a protein (RhdA) of the rhodanese-homology...
In Azotobacter vinelandii the rhdA gene codes for a protein (RhdA) of the rhodanese-homology superfa...
<p>The scheme displays a possible interplay of RhdA-catalyzed GS<sup>•</sup>-scavenging (thick lines...
Rhodaneses (TST; EC 2.8.1.1) catalyze in vitro the transfer of sulfane sulfur from thiosulfate to cy...
After heterologous expression in Escherichia coli, the Azotobacter vinelandii rhodanese RhdA is puri...
Glutathione, the most abundant non-enzymatic cellular thiol, regulates the redox environment through...
AbstractAfter heterologous expression in Escherichia coli, the Azotobacter vinelandii rhodanese RhdA...
AbstractAzotobacter vinelandii RhdA uses thiosulfate as the only sulfur donor in vitro, and this app...
International audienceFrom bacteria to plants and humans, the glutathione system plays a pleiotropic...
<div><p>The phenotypic features of the <em>Azotobacter vinelandii</em> RhdA mutant MV474 (in which t...
The phenotypic features of the Azotobacter vinelandii RhdA mutant MV474 (in which the rhdA gene was ...
An increasing number of studies correlated the expression of rhodanese-like proteins to the manageme...
International audienceThe rhdA gene of Azotobacter vinelandii codes for a rhodanese-domain protein (...
The tandem domain rhodanese-homology protein RhdA of Azotobacter vinelandii shows an active-site loo...
The subjects of the present investigation were A. vinelandii RhdA and E.coli SseA, that in the rhoda...
AbstractIn Azotobacter vinelandii the rhdA gene codes for a protein (RhdA) of the rhodanese-homology...
In Azotobacter vinelandii the rhdA gene codes for a protein (RhdA) of the rhodanese-homology superfa...
<p>The scheme displays a possible interplay of RhdA-catalyzed GS<sup>•</sup>-scavenging (thick lines...
Rhodaneses (TST; EC 2.8.1.1) catalyze in vitro the transfer of sulfane sulfur from thiosulfate to cy...
After heterologous expression in Escherichia coli, the Azotobacter vinelandii rhodanese RhdA is puri...
Glutathione, the most abundant non-enzymatic cellular thiol, regulates the redox environment through...
AbstractAfter heterologous expression in Escherichia coli, the Azotobacter vinelandii rhodanese RhdA...
AbstractAzotobacter vinelandii RhdA uses thiosulfate as the only sulfur donor in vitro, and this app...
International audienceFrom bacteria to plants and humans, the glutathione system plays a pleiotropic...