Arginase is a binuclear manganese metalloenzyme that hydrolyzes L-arginine to form L-ornithine and urea, and aberrant arginase activity is implicated in various diseases such as erectile dysfunction, asthma, atherosclerosis, and cerebral malaria. Accordingly, arginase inhibitors may be therapeutically useful. Continuing our efforts to expand the chemical space of arginase inhibitor design and inspired by the binding of 2-(difluoromethyl)-L-ornithine to human arginase I, we now report the first study of the binding of α,α-disubstituted amino acids to arginase. Specifically, we report the design, synthesis, and assay of racemic 2-amino-6-borono-2-methylhexanoic acid and racemic 2-amino-6-borono-2-(difluoromethyl)hexanoic acid. X-ray crystal s...
The binding affinity of (S)-2-amino-6-nitrohexanoic acid to human arginase I was studied using surfa...
The primary purpose of this study was to use a virtual screening pipeline to identify novel inhibito...
Arginases and deacetylases are metallohydrolases that catalyze two distinct chemical transformations...
Arginase is a binuclear manganese metalloenzyme that hydrolyzes L-arginine to form L-ornithine and u...
Arginase is a binuclear manganese metalloenzyme that hydrolyzes L-arginine to form L-ornithine and u...
Arginase is a binuclear manganese metalloenzyme that catalysis the hydrolysis of L-arginine to form ...
Arginase is a binuclear manganese metalloenzyme that catalysis the hydrolysis of L-arginine to form ...
Human arginase I is a potential target for therapeutic intervention in diseases linked to compromise...
Human arginase I is a potential target for therapeutic intervention in diseases linked to compromise...
Human arginase I is a potential target for therapeutic intervention in diseases linked to compromise...
The X-ray crystal structure of arginase from <i>Schistosoma mansoni</i> (SmARG) and the structures o...
ABSTRACT: The X-ray crystal structure of arginase from Schistosoma mansoni (SmARG) and the structure...
Human arginase I (HAI) is a binuclear manganese metalloenzyme that catalyzes the hydrolysis of l-arg...
The binding affinity of (S)-2-amino-6-nitrohexanoic acid to human arginase I was studied using surfa...
The binding affinity of (S)-2-amino-6-nitrohexanoic acid to human arginase I was studied using surfa...
The binding affinity of (S)-2-amino-6-nitrohexanoic acid to human arginase I was studied using surfa...
The primary purpose of this study was to use a virtual screening pipeline to identify novel inhibito...
Arginases and deacetylases are metallohydrolases that catalyze two distinct chemical transformations...
Arginase is a binuclear manganese metalloenzyme that hydrolyzes L-arginine to form L-ornithine and u...
Arginase is a binuclear manganese metalloenzyme that hydrolyzes L-arginine to form L-ornithine and u...
Arginase is a binuclear manganese metalloenzyme that catalysis the hydrolysis of L-arginine to form ...
Arginase is a binuclear manganese metalloenzyme that catalysis the hydrolysis of L-arginine to form ...
Human arginase I is a potential target for therapeutic intervention in diseases linked to compromise...
Human arginase I is a potential target for therapeutic intervention in diseases linked to compromise...
Human arginase I is a potential target for therapeutic intervention in diseases linked to compromise...
The X-ray crystal structure of arginase from <i>Schistosoma mansoni</i> (SmARG) and the structures o...
ABSTRACT: The X-ray crystal structure of arginase from Schistosoma mansoni (SmARG) and the structure...
Human arginase I (HAI) is a binuclear manganese metalloenzyme that catalyzes the hydrolysis of l-arg...
The binding affinity of (S)-2-amino-6-nitrohexanoic acid to human arginase I was studied using surfa...
The binding affinity of (S)-2-amino-6-nitrohexanoic acid to human arginase I was studied using surfa...
The binding affinity of (S)-2-amino-6-nitrohexanoic acid to human arginase I was studied using surfa...
The primary purpose of this study was to use a virtual screening pipeline to identify novel inhibito...
Arginases and deacetylases are metallohydrolases that catalyze two distinct chemical transformations...