International audienceHistidine is a very common metal ligand in metalloenzymes. Besides being an efficient Lewis base, its electronic properties are essential to shape the metal ability to catalyze the reaction. Here we show that histidine's properties can be tuned, in turn, by an easy proton transfer to a nearby glutamate. We study this situation in Human Carbonic Anhydrase II (HCA II) in which one of the three histidines bound to zinc (His119) interacts also with a glutamate residue (Glu117). Proton transfer from His119 to Glu117 has been hypothesized in the past, however realistic modeling is performed here for the first time. We show that the carboxylate group of Glu117 behaves only as a hydrogen bond acceptor in the hydroxy form of HC...
The essential role of metal ions in biology is stressed by structural investigations on two metalloe...
Why metalloenzymes often show dramatic changes in their catalytic activity when subjected to chemica...
In this paper we describe the first all-atom aqueous-phase MD simulations of human carbonic anhydra...
International audienceHistidine is a very common metal ligand in metalloenzymes. Besides being an ef...
AbstractSmall molecule rescue of mutant forms of human carbonic anhydrase II (HCA II) occurs by part...
The barrier for the proton transfer in human carbonic anhydrase II (HCA II) has been studied by incl...
AbstractOne of the zinc ligands in human carbonic anhydrase II, His94, has been replaced with glutam...
AbstractWe investigated the efficiency of glutamic acid 64 and aspartic acid 64 as proton donors to ...
The imidazole ^N signals of histidine 64 (His^), involved in the catalytic function of human carboni...
Human carbonic anhydrase II (HCA II) catalyses the reversible hydration of CO2. In this enzyme, the ...
Human carbonic anhydrase II (HCAII) acts as a carbon dioxide sequestration catalyst, removing carbon...
Human carbonic anhydrase II (hCA II) is a zinc metalloenzyme that catalyzes the reversible hydration...
open5noCarbonic anhydrases (CAs, EC 4.2.1.1) are ubiquitous metalloenzymes, grouped into seven diffe...
Variants of human carbonic anhydrase II (HCA II) with amino acid replacements at residues in contact...
Although important progress has been achieved in understanding the catalytic mechanism of Carbonic A...
The essential role of metal ions in biology is stressed by structural investigations on two metalloe...
Why metalloenzymes often show dramatic changes in their catalytic activity when subjected to chemica...
In this paper we describe the first all-atom aqueous-phase MD simulations of human carbonic anhydra...
International audienceHistidine is a very common metal ligand in metalloenzymes. Besides being an ef...
AbstractSmall molecule rescue of mutant forms of human carbonic anhydrase II (HCA II) occurs by part...
The barrier for the proton transfer in human carbonic anhydrase II (HCA II) has been studied by incl...
AbstractOne of the zinc ligands in human carbonic anhydrase II, His94, has been replaced with glutam...
AbstractWe investigated the efficiency of glutamic acid 64 and aspartic acid 64 as proton donors to ...
The imidazole ^N signals of histidine 64 (His^), involved in the catalytic function of human carboni...
Human carbonic anhydrase II (HCA II) catalyses the reversible hydration of CO2. In this enzyme, the ...
Human carbonic anhydrase II (HCAII) acts as a carbon dioxide sequestration catalyst, removing carbon...
Human carbonic anhydrase II (hCA II) is a zinc metalloenzyme that catalyzes the reversible hydration...
open5noCarbonic anhydrases (CAs, EC 4.2.1.1) are ubiquitous metalloenzymes, grouped into seven diffe...
Variants of human carbonic anhydrase II (HCA II) with amino acid replacements at residues in contact...
Although important progress has been achieved in understanding the catalytic mechanism of Carbonic A...
The essential role of metal ions in biology is stressed by structural investigations on two metalloe...
Why metalloenzymes often show dramatic changes in their catalytic activity when subjected to chemica...
In this paper we describe the first all-atom aqueous-phase MD simulations of human carbonic anhydra...