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Tyrphostins are inhibitors of guanylyl and adenylyl cyclases.
- Source :
-
Biochemistry [Biochemistry] 2004 Jun 29; Vol. 43 (25), pp. 8247-55. - Publication Year :
- 2004
-
Abstract
- Guanylyl cyclase C (GC-C), the receptor for guanylin, uroguanylin, and the heat-stable enterotoxin, regulates fluid balance in the intestine and extraintestinal tissues. The receptor has an extracellular domain, a single transmembrane spanning domain, and an intracellular domain that harbors a region homologous to protein kinases, followed by the C-terminal guanylyl cyclase domain. Adenine nucleotides can regulate the guanylyl cyclase activity of GC-C by binding to the intracellular kinase homology domain (KHD). In this study, we have tested the effect of several protein kinase inhibitors on GC-C activity and find that the tyrphostins, known to be tyrosine kinase inhibitors, could inhibit GC-C activity in vitro. Tyrphostin A25 (AG82) was the most potent inhibitor with an IC(50) of approximately 15 microM. The mechanism of inhibition was found to be noncompetitive with respect to both the substrate MnGTP and the metal cofactor. Interestingly, the activity of the catalytic domain of GC-C (lacking the KHD) expressed in insect cells was also inhibited by tyrphostin A25 with an IC(50) of approximately 5 microM. As with the full-length receptor, inhibition was found to be noncompetitive with respect to MnGTP. Inhibition was reversible, ruling out a covalent modification of the receptor. Structurally similar proteins such as the soluble guanylyl cyclase and the adenylyl cyclases were also inhibited by tyrphostin A25. Evaluation of a number of tyrphostins allowed us to identify the requirement of two vicinal hydroxyl groups in the tyrphostin for effective inhibition of cyclase activity. Therefore, our studies are the first to report that nucleotide cyclases are inhibited by tyrphostins and suggest that novel inhibitors based on the tyrphostin scaffold can be developed, which could aid in a greater understanding of nucleotide cyclase structure and function.
- Subjects :
- Adenylyl Cyclases genetics
Adenylyl Cyclases metabolism
Animals
Catalytic Domain
Cell Line
Cyclic GMP metabolism
Cytosol enzymology
Dogs
Escherichia coli metabolism
Guanosine Triphosphate chemistry
Guanosine Triphosphate metabolism
Guanylate Cyclase chemistry
Guanylate Cyclase genetics
Guanylate Cyclase metabolism
Humans
Inhibitory Concentration 50
Kinetics
Manganese chemistry
Manganese pharmacology
Membrane Proteins antagonists & inhibitors
Membrane Proteins metabolism
Protein-Tyrosine Kinases antagonists & inhibitors
Rabbits
Radioligand Assay
Receptors, Enterotoxin
Receptors, Guanylate Cyclase-Coupled
Receptors, Peptide antagonists & inhibitors
Receptors, Peptide chemistry
Receptors, Peptide genetics
Receptors, Peptide metabolism
Recombinant Proteins antagonists & inhibitors
Recombinant Proteins chemistry
Recombinant Proteins genetics
Recombinant Proteins metabolism
Spodoptera cytology
Structure-Activity Relationship
Tyrphostins chemistry
Tyrphostins metabolism
Adenylyl Cyclase Inhibitors
Enzyme Inhibitors pharmacology
Guanylate Cyclase antagonists & inhibitors
Tyrphostins pharmacology
Subjects
Details
- Language :
- English
- ISSN :
- 0006-2960
- Volume :
- 43
- Issue :
- 25
- Database :
- MEDLINE
- Journal :
- Biochemistry
- Publication Type :
- Academic Journal
- Accession number :
- 15209521
- Full Text :
- https://doi.org/10.1021/bi036234n