AbstractThe carbonic anhydrase (CA) family of zinc metalloenzymes includes many known isozymes that have different subcellular distributions. The study described here focuses on identification of the structural features that define low-temperature adaptation in a Chionodraco hamatus protein, both for the reaction center, at an atomic level, and for the tertiary structure of the protein. To this aim, an x-ray absorption near-edge spectroscopy/Minuit x-ray absorption near-edge spectroscopy analysis of the reaction center was undertaken for both a structurally characterized human CAII and CA of C. hamatus. Higher structural levels were analyzed by sequence comparison and homology modeling. To establish whether the structural insights acquired ...
AbstractWe investigated the efficiency of glutamic acid 64 and aspartic acid 64 as proton donors to ...
Human carbonic anhydrase II (hCA II) is a zinc metalloenzyme that catalyzes the reversible hydration...
Enzymes are molecular machines that accelerate chemical reactions by lowering their activation energ...
The carbonic anhydrase (CA) family of zinc metalloenzymes includes many known isozymes that have dif...
AbstractThe carbonic anhydrase (CA) family of zinc metalloenzymes includes many known isozymes that ...
The carbonic anhydrase (CA) family of zinc metalloenzymes includes many known isozymes that have dif...
Gill cytoplasmic carbonic anhydrase of the haemoglobinless Antarctic icefish Chionodraco hamatus (Ic...
Aim: A cytosolic carbonic anhydrase (I-CA) isoform, showing higher catalytic rate with respect to te...
The work presented in this thesis is aimed at elucidating aspects of the catalytic mechanism of the ...
Carbonic anhydrases (CAs) are mostly zinc metalloenzymes that catalyze the reversible hydration/dehy...
The γ-class carbonic anhydrases (γ-CAs) mainly come from methanogens methane-producing bacteria that...
AbstractMolecular flexibility and rigidity are required to determine the function and specificity of...
Enzymes are catalysts of biological processes. Significant insight into their catalytic mechanisms h...
The prototype of the γ-class of carbonic anhydrase has been characterized from the methanogenic arch...
AbstractA murine carbonic anhydrase-related protein (CARP) has been expressed in Escherichia coli an...
AbstractWe investigated the efficiency of glutamic acid 64 and aspartic acid 64 as proton donors to ...
Human carbonic anhydrase II (hCA II) is a zinc metalloenzyme that catalyzes the reversible hydration...
Enzymes are molecular machines that accelerate chemical reactions by lowering their activation energ...
The carbonic anhydrase (CA) family of zinc metalloenzymes includes many known isozymes that have dif...
AbstractThe carbonic anhydrase (CA) family of zinc metalloenzymes includes many known isozymes that ...
The carbonic anhydrase (CA) family of zinc metalloenzymes includes many known isozymes that have dif...
Gill cytoplasmic carbonic anhydrase of the haemoglobinless Antarctic icefish Chionodraco hamatus (Ic...
Aim: A cytosolic carbonic anhydrase (I-CA) isoform, showing higher catalytic rate with respect to te...
The work presented in this thesis is aimed at elucidating aspects of the catalytic mechanism of the ...
Carbonic anhydrases (CAs) are mostly zinc metalloenzymes that catalyze the reversible hydration/dehy...
The γ-class carbonic anhydrases (γ-CAs) mainly come from methanogens methane-producing bacteria that...
AbstractMolecular flexibility and rigidity are required to determine the function and specificity of...
Enzymes are catalysts of biological processes. Significant insight into their catalytic mechanisms h...
The prototype of the γ-class of carbonic anhydrase has been characterized from the methanogenic arch...
AbstractA murine carbonic anhydrase-related protein (CARP) has been expressed in Escherichia coli an...
AbstractWe investigated the efficiency of glutamic acid 64 and aspartic acid 64 as proton donors to ...
Human carbonic anhydrase II (hCA II) is a zinc metalloenzyme that catalyzes the reversible hydration...
Enzymes are molecular machines that accelerate chemical reactions by lowering their activation energ...