Abstract
Reactions mediated by the opiate receptors that inhibit adenylate cyclase (EC 4.6.1.1) are closely coupled to subsequent reactions that gradually increase adenylate cyclase activity of neuroblastoma X glioma NG108-15 hybrid cells. Opiate-treated cells have higher basal-, prostaglandin E1-, and 2-chloroadenosine-stimulated activities than do control cells. However, NaF or guanosine 5'-(beta, gamma-imido)triphosphate abolishes most of the differences in adenylate cyclase activity observed with homogenates from control and opiate-treated cells. Cycloheximide blocked some, but not all, of the opiate-dependent increase in adenylate cyclase activity. These results suggest that the opiate-dependent increase in adenylate cyclase is due to conversion of adenylate cyclase to a form with altered activity. Protein synthesis also is required for part of the opiate effect. We propose that activity of adenylate cyclase determines the rate of conversion of the enzyme from one form to the other and that opiates, by inhibiting adenylate cyclase, alter the relative abundance of low- and high-activity forms of the enzyme.
MeSH Terms
Adenosine/analogs & derivatives,pharmacology
Adenylyl Cyclases/metabolism
Cell Line
Cycloheximide/pharmacology
Enzyme Activation/drug effects
Etorphine/pharmacology
Fluorides/pharmacology
Glioma
Guanylyl Imidodiphosphate/pharmacology
Hybrid Cells
Kinetics
Morphinans/pharmacology
Morphine/pharmacology
Naloxone/pharmacology
Neuroblastoma
Prostaglandins E/pharmacology
Chemicals
Morphinans
Prostaglandins E
Guanylyl Imidodiphosphate
Naloxone
Etorphine
Morphine
Cycloheximide
Adenylyl Cyclases
Adenosine
Fluorides
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Sharma S K
Klee W A
Nirenberg M
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16 references, click to expand
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