Arginase: Structure, Mechanism, and Physiological Role in Male and Female Sexual Arousal
- 11 February 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Accounts of Chemical Research
- Vol. 38 (3) , 191-201
- https://doi.org/10.1021/ar040183k
Abstract
Mammalian arginases I and II require an intact binuclear manganese cluster for the hydrolysis of l-arginine to generate l-ornithine and urea. Although arginase isozymes differ in terms of their tissue distribution, cellular localization, and metabolic function, each employs a metal-activated hydroxide mechanism for catalysis. To date, the best arginase inhibitors are those bearing N-hydroxyguanidinium or boronic acid “warheads” that can bridge the binuclear manganese cluster. Strikingly, the trigonal planar boronic acids undergo nucleophilic attack by hydroxide ion to form tetrahedral boronate anions that mimic the tetrahedral intermediate and its flanking transition states in the arginase mechanism. Given their affinity and specificity for arginase, boronic acid inhibitors are especially useful for probing the role of arginase in living systems. Arginase can regulate l-arginine bioavailability to nitric oxide synthase by depleting the substrate pool for NO biosynthesis, so arginase inhibition can enhance the substrate pool for NO biosynthesis. Accordingly, arginase inhibition can enhance NO-dependent physiological processes, such as the smooth muscle relaxation required for sexual arousal: administration of arginase inhibitors in vitro and in vivo enhances erectile function and engorgement in the male and female genitalia. Therefore, arginase is a potential therapeutic target for the treatment of sexual arousal disorders in men and women.Keywords
This publication has 45 references indexed in Scilit:
- Inhibitor Coordination Interactions in the Binuclear Manganese Cluster of Arginase,Biochemistry, 2004
- Design of Amino Acid Sulfonamides as Transition-State Analogue Inhibitors of ArginaseJournal of the American Chemical Society, 2003
- Increased Expression of Arginase II in Human Diabetic Corpus Cavernosum: In Diabetic-Associated Erectile DysfunctionBiochemical and Biophysical Research Communications, 2001
- Effects of Long-term Oral Administration of L-Arginine on the Rat Erectile ResponseJournal of Urology, 1997
- Immunohistochemical Description of Nitric Oxide Synthase Isoforms in Human ClitorisJournal of Urology, 1997
- The New α-Amino Acid Nω-Hydroxy-nor-l-arginine: a High-Affinity Inhibitor of Arginase Well Adapted To Bind to Its Manganese ClusterJournal of the American Chemical Society, 1997
- Nω-Hydroxyamino-α-amino acids as a new class of very strong inhibitors of arginasesJBIC Journal of Biological Inorganic Chemistry, 1996
- Measurement of Nitric Oxide Release In the Isolated Perfused Rat LungBiochemical and Biophysical Research Communications, 1995
- Inhibition of Rat Liver Arginase by an Intermediate in NO Biosynthesis, NG-Hydroxy-L-arginine: Implications for the Regulation of Nitric Oxide Biosynthesis by ArginaseBiochemical and Biophysical Research Communications, 1994
- Nitric Oxide: A Physiologic Mediator of Penile ErectionScience, 1992