Chlorite dismutases (Clds) are heme b-containing oxidoreductases that can decompose chlorite to chloride and molecular oxygen. They are divided in two clades that differ in oligomerization, subunit architecture, and the hydrogen-bonding network of the distal catalytic arginine, which is proposed to switch between two conformations during turnover. To understand the impact of the conformational dynamics of this basic amino acid on heme coordination, structure, and catalysis, Cld from Cyanothece sp. PCC7425 was used as a model enzyme. As typical for a clade 2 Cld, its distal arginine 127 is hydrogen-bonded to glutamine 74. The latter has been exchanged with either glutamate (Q74E) to arrest R127 in a salt bridge or valine (Q74V) that mirrors ...
ABSTRACT: Chlorite dismutases are prokaryotic heme b oxidoreductases that convert chlorite to chlori...
Chlorite dismutases (Clds) are heme <i>b</i>-containing oxidoreductases that convert chlorite to chl...
Iron is essential in many biological functions such as oxygen transport, storage and redox processes...
Articles ASAP (as soon as publishable) posted online and available to view immediately after technic...
Abstract The heme enzyme chlorite dismutase (Cld) catalyzes the degradation of chlorite to chloride...
The heme enzyme chlorite dismutase (Cld) catalyzes the degradation of chlorite to chloride and dioxy...
Chlorite dismutase (Cld) is a key enzyme of perchlorate and chlorate respiration. This heme-based pr...
Chlorite dismutases (Clds) are heme <i>b</i> containing oxidoreductases that convert chlorite to chl...
ABSTRACT: Chlorite dismutases (Clds) are heme b containing oxidoreductases that convert chlorite to ...
Chlorite dismutases (Clds) are heme b containing oxidoreductases that convert chlorite to chloride a...
AbstractChlorite dismutases (Cld) are unique heme b containing oxidoreductases that convert chlorite...
The heme enzyme chlorite dismutase (Cld) catalyzes O-O bond formation as part of the conversion of t...
Chlorite dismutases are prokaryotic heme <i>b</i> oxidoreductases that convert chlorite to chloride ...
Chlorite dismutase (Cld) is a key enzyme of perchlorate and chlorate respiration. This heme-based pr...
*S Supporting Information ABSTRACT: Chlorite dismutases (Clds) are heme b-contain-ing oxidoreductase...
ABSTRACT: Chlorite dismutases are prokaryotic heme b oxidoreductases that convert chlorite to chlori...
Chlorite dismutases (Clds) are heme <i>b</i>-containing oxidoreductases that convert chlorite to chl...
Iron is essential in many biological functions such as oxygen transport, storage and redox processes...
Articles ASAP (as soon as publishable) posted online and available to view immediately after technic...
Abstract The heme enzyme chlorite dismutase (Cld) catalyzes the degradation of chlorite to chloride...
The heme enzyme chlorite dismutase (Cld) catalyzes the degradation of chlorite to chloride and dioxy...
Chlorite dismutase (Cld) is a key enzyme of perchlorate and chlorate respiration. This heme-based pr...
Chlorite dismutases (Clds) are heme <i>b</i> containing oxidoreductases that convert chlorite to chl...
ABSTRACT: Chlorite dismutases (Clds) are heme b containing oxidoreductases that convert chlorite to ...
Chlorite dismutases (Clds) are heme b containing oxidoreductases that convert chlorite to chloride a...
AbstractChlorite dismutases (Cld) are unique heme b containing oxidoreductases that convert chlorite...
The heme enzyme chlorite dismutase (Cld) catalyzes O-O bond formation as part of the conversion of t...
Chlorite dismutases are prokaryotic heme <i>b</i> oxidoreductases that convert chlorite to chloride ...
Chlorite dismutase (Cld) is a key enzyme of perchlorate and chlorate respiration. This heme-based pr...
*S Supporting Information ABSTRACT: Chlorite dismutases (Clds) are heme b-contain-ing oxidoreductase...
ABSTRACT: Chlorite dismutases are prokaryotic heme b oxidoreductases that convert chlorite to chlori...
Chlorite dismutases (Clds) are heme <i>b</i>-containing oxidoreductases that convert chlorite to chl...
Iron is essential in many biological functions such as oxygen transport, storage and redox processes...