Mechanism-based inactivation of dopamine beta-monooxygenase in adrenal chromaffin cells. 1996

S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta 30332, USA. sheldon.may@chemistry.gatech.edu

Dopamine beta-monoxygenase (DBM, E.C. 1.14.17.1) is an attractive target point for possible modulation of adrenergic activity, and a variety of DBM-targeted pseudosubstrates and inhibitors have been developed in this laboratory and other laboratories. We now demonstrate the efficacy of a DBM-targeted mechanism-based inactivator, as well as enzymatic processing of two alternate DBM substrates, within functional adrenal chromaffin cells. When cultured adrenal medullary chromaffin cells were incubated with the mechanism-based inactivator 1-(4'-hydroxyphenyl)-1-(aminomethyl)-ethene (HOPAME), vesicular DBM activity was markedly decreased. Similarly, the alternate substrates 4'-hydroxyphenyl-2-aminoethyl sulfide and 4'-hydroxyphenyl-2-aminopropyl selenide each undergo uptake and DBM-catalyzed oxygenation within these cells. The simultaneous action of both the mechanism-based inactivator and an alternate substrate within functional chromaffin cells was also demonstrated. These results provide support for a direct mechanistic link between the enzymological properties of DBM-targeted adrenergic agents and their in-vivo pharmacological activities.

UI MeSH Term Description Entries
D007700 Kinetics The rate dynamics in chemical or physical systems.
D009655 Octopamine An alpha-adrenergic sympathomimetic amine, biosynthesized from tyramine in the CNS and platelets and also in invertebrate nervous systems. It is used to treat hypotension and as a cardiotonic. The natural D(-) form is more potent than the L(+) form in producing cardiovascular adrenergic responses. It is also a neurotransmitter in some invertebrates. Norsynephrine,p-Octopamine,para-Octopamine,4-Octopamine,Norsympatol,alpha-(Aminoethyl)-4-hydroxybenzenemethanol
D010636 Phenols Benzene derivatives that include one or more hydroxyl groups attached to the ring structure.
D002478 Cells, Cultured Cells propagated in vitro in special media conducive to their growth. Cultured cells are used to study developmental, morphologic, metabolic, physiologic, and genetic processes, among others. Cultured Cells,Cell, Cultured,Cultured Cell
D002837 Chromaffin Granules Organelles in CHROMAFFIN CELLS located in the adrenal glands and various other organs. These granules are the site of the synthesis, storage, metabolism, and secretion of EPINEPHRINE and NOREPINEPHRINE. Chromaffin Granule,Granule, Chromaffin
D003600 Cytosol Intracellular fluid from the cytoplasm after removal of ORGANELLES and other insoluble cytoplasmic components. Cytosols
D004299 Dopamine beta-Hydroxylase Dopamine beta-Monooxygenase,Dopamine beta Hydroxylase,Dopamine beta Monooxygenase,beta-Hydroxylase, Dopamine,beta-Monooxygenase, Dopamine
D004791 Enzyme Inhibitors Compounds or agents that combine with an enzyme in such a manner as to prevent the normal substrate-enzyme combination and the catalytic reaction. Enzyme Inhibitor,Inhibitor, Enzyme,Inhibitors, Enzyme
D000313 Adrenal Medulla The inner portion of the adrenal gland. Derived from ECTODERM, adrenal medulla consists mainly of CHROMAFFIN CELLS that produces and stores a number of NEUROTRANSMITTERS, mainly adrenaline (EPINEPHRINE) and NOREPINEPHRINE. The activity of the adrenal medulla is regulated by the SYMPATHETIC NERVOUS SYSTEM. Adrenal Medullas,Medulla, Adrenal,Medullas, Adrenal
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia

Related Publications

S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
June 1984, The Journal of biological chemistry,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
December 1981, The Journal of biological chemistry,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
October 1981, Archives of biochemistry and biophysics,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
April 1990, The Journal of biological chemistry,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
January 1988, The Journal of biological chemistry,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
October 1992, Biochemical and biophysical research communications,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
January 1987, Methods in enzymology,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
June 1986, The Journal of biological chemistry,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
January 1989, The Journal of biological chemistry,
S W May, and F K Young, and J L Powers, and M M Gill-Woznichak
December 1986, The Journal of biological chemistry,
Copied contents to your clipboard!