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Prostanoid biosynthesis and mechanisms of action

American Journal of Physiology-Renal Physiology · 1992 · Vol. 263(2) · pp. F181–F191
William L. Smith

Abstract

Prostanoids are local hormones formed from arachidonic acid that coordinate responses to circulating hormones which elicit prostanoid synthesis. For example, in the kidney, prostaglandin (PG) E2 synthesized by collecting tubule epithelia in response to arginine vasopressin (AVP) acts on the parent collecting tubule as well as the neighboring thick limb to modulate NaCl and water reabsorption occurring in response to AVP. Studies performed over the last 15 years have defined the major cellular and subcellular sites of PG synthesis in the kidney. In addition, it is now recognized that the multiple cellular actions of prostanoids in the kidney are mediated through receptors coupled to guanine nucleotide regulatory proteins. The goal of this review is to summarize recent biochemical and molecular biological studies on prostanoid biosynthetic enzymes and on prostanoid receptors. The major topics to be addressed are 1) phospholipid precursors of arachidonate, 2) membrane-associated and cytosolic phospholipase A2s, 3) PG endoperoxide (PGH) synthase isozymes, 4) thromboxane A (TxA) synthase, and 5) TxA/PGH and PGE receptors.

Eicosanoids and Hypertension PharmacologyInflammatory mediators and NSAID effectsPharmacogenetics and Drug MetabolismProstanoidReceptorVasopressinThromboxaneChemistryProstaglandinKidneyBiochemistryThromboxane receptorArachidonic acid

MeSH terms

Amino Acid SequenceAnimalsBiological TransportHumansIsoenzymesMolecular Sequence DataPhospholipasesProstaglandin-Endoperoxide SynthasesProstaglandinsProtein PrecursorsReceptors, Cell SurfaceArachidonic AcidLipid Metabolism
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