Matches in SemOpenAlex for { <https://semopenalex.org/work/W1556795890> ?p ?o ?g. }
- W1556795890 endingPage "12653" @default.
- W1556795890 startingPage "12645" @default.
- W1556795890 abstract "The mechanism of activation of the agonist-stimulated Ca2+ entry pathway in the plasma membrane is not known. To determine the role of nitric-oxide synthase (NOS) and cGMP in the regulation of this pathway, we used intact and streptolysin O (SLO)-permeable pancreatic acini and measured the relationship between Ca2+ release from internal stores, the NO metabolic pathway, generation of cGMP, and activation of Ca2+ entry. We found that agonist- or thapsigargin (Tg)-activated Ca2+ entry is inhibited by L-NA, a specific inhibitor of NOS, and by LY83583, an inhibitor of guanylyl cyclase. Inhibition of Ca2+ entry by inhibition of NOS was reversed by the NO releasing molecules NO2- and sodium nitroprusside (SNP) and by Bt2cGMP. Inhibition of Ca2+ entry by inhibition of guanylyl cyclase was reversed by Bt2cGMP, but not by the NO releasing agents. The use of L-NA-treated cells and different concentrations of SNP revealed that cGMP has a dual effect on Ca2+ entry. Increasing cGMP up to 10-fold above control activated Ca2+ entry. Further increase in cGMP up to 80-fold above control inhibited Ca2+ entry in a concentration-dependent manner. Measurement of cellular cGMP in intact cells showed that carbachol, Tg, and NO2- increased cGMP to similar levels. The effects of carbachol and Tg were inhibited by L-NA and LY83586, whereas the effect of NO2- was inhibited only by LY83583. SLO-permeabilized cells were shown to be agonist-competent in that the agonist induced Ca2+ release from the inositol 1,4,5-trisphosphate (IP3) pool and activated a NO-dependent generation of cGMP. These cells were used to study the regulation of NOS by Ca2+ and by Ca2+ content of the internal stores. When internal stores were maintained loaded with Ca2+, increasing medium [Ca2+] up to 2.5 microM only modestly increased NOS activity. In contrast, the depletion of Ca2+ from internal stores markedly increased NOS activity independent of medium [Ca2+]. Thus, NOS senses both cytosolic [Ca2+]i and internal store Ca2+ load. We propose that activation of Ca2+ entry involves an agonist-mediated Ca2+ release from internal stores which activates a cellular pool of NOS to generate cGMP, which then modulates Ca2+ entry pathway in the plasma membrane. This mechanism can explain the capacitative nature of Ca2+ entry. The biphasic effect of cGMP provides the cells with a negative feedback mechanism which inhibits Ca2+ entry during periods of high cell [Ca2+]i. This could allow oscillatory behavior of Ca2+ entry." @default.
- W1556795890 created "2016-06-24" @default.
- W1556795890 creator A5026399142 @default.
- W1556795890 creator A5049121616 @default.
- W1556795890 creator A5068367436 @default.
- W1556795890 creator A5091830338 @default.
- W1556795890 date "1994-04-01" @default.
- W1556795890 modified "2023-10-17" @default.
- W1556795890 title "Depletion of intracellular Ca2+ stores activates nitric-oxide synthase to generate cGMP and regulate Ca2+ influx." @default.
- W1556795890 cites W114978262 @default.
- W1556795890 cites W1487158137 @default.
- W1556795890 cites W1487192768 @default.
- W1556795890 cites W1499398296 @default.
- W1556795890 cites W1518984641 @default.
- W1556795890 cites W1520080677 @default.
- W1556795890 cites W1520251373 @default.
- W1556795890 cites W1535298549 @default.
- W1556795890 cites W1545068312 @default.
- W1556795890 cites W1552536758 @default.
- W1556795890 cites W1576416454 @default.
- W1556795890 cites W1591067042 @default.
- W1556795890 cites W1603223792 @default.
- W1556795890 cites W1655889108 @default.
- W1556795890 cites W1754139258 @default.
- W1556795890 cites W1857056367 @default.
- W1556795890 cites W1939830031 @default.
- W1556795890 cites W1968243333 @default.
- W1556795890 cites W1970721812 @default.
- W1556795890 cites W1980166477 @default.
- W1556795890 cites W1995418515 @default.
- W1556795890 cites W1997778815 @default.
- W1556795890 cites W1998606603 @default.
- W1556795890 cites W2009013636 @default.
- W1556795890 cites W2015480034 @default.
- W1556795890 cites W2019814232 @default.
- W1556795890 cites W2034349452 @default.
- W1556795890 cites W2057479888 @default.
- W1556795890 cites W2060648237 @default.
- W1556795890 cites W2068166881 @default.
- W1556795890 cites W2072785177 @default.
- W1556795890 cites W2074183540 @default.
- W1556795890 cites W2082098566 @default.
- W1556795890 cites W2086669662 @default.
- W1556795890 cites W2091368852 @default.
- W1556795890 cites W2092643965 @default.
- W1556795890 cites W2092995816 @default.
- W1556795890 cites W2134786188 @default.
- W1556795890 cites W2176210399 @default.
- W1556795890 cites W2263282939 @default.
- W1556795890 cites W2442641005 @default.
- W1556795890 cites W2799503982 @default.
- W1556795890 cites W83999324 @default.
- W1556795890 doi "https://doi.org/10.1016/s0021-9258(18)99925-4" @default.
- W1556795890 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/7513692" @default.
- W1556795890 hasPublicationYear "1994" @default.
- W1556795890 type Work @default.
- W1556795890 sameAs 1556795890 @default.
- W1556795890 citedByCount "166" @default.
- W1556795890 countsByYear W15567958902012 @default.
- W1556795890 countsByYear W15567958902013 @default.
- W1556795890 countsByYear W15567958902014 @default.
- W1556795890 countsByYear W15567958902016 @default.
- W1556795890 countsByYear W15567958902017 @default.
- W1556795890 countsByYear W15567958902018 @default.
- W1556795890 countsByYear W15567958902020 @default.
- W1556795890 countsByYear W15567958902023 @default.
- W1556795890 crossrefType "journal-article" @default.
- W1556795890 hasAuthorship W1556795890A5026399142 @default.
- W1556795890 hasAuthorship W1556795890A5049121616 @default.
- W1556795890 hasAuthorship W1556795890A5068367436 @default.
- W1556795890 hasAuthorship W1556795890A5091830338 @default.
- W1556795890 hasBestOaLocation W15567958901 @default.
- W1556795890 hasConcept C112243037 @default.
- W1556795890 hasConcept C12554922 @default.
- W1556795890 hasConcept C178790620 @default.
- W1556795890 hasConcept C181199279 @default.
- W1556795890 hasConcept C185592680 @default.
- W1556795890 hasConcept C2777622882 @default.
- W1556795890 hasConcept C519581460 @default.
- W1556795890 hasConcept C55493867 @default.
- W1556795890 hasConcept C79879829 @default.
- W1556795890 hasConcept C86803240 @default.
- W1556795890 hasConcept C95444343 @default.
- W1556795890 hasConceptScore W1556795890C112243037 @default.
- W1556795890 hasConceptScore W1556795890C12554922 @default.
- W1556795890 hasConceptScore W1556795890C178790620 @default.
- W1556795890 hasConceptScore W1556795890C181199279 @default.
- W1556795890 hasConceptScore W1556795890C185592680 @default.
- W1556795890 hasConceptScore W1556795890C2777622882 @default.
- W1556795890 hasConceptScore W1556795890C519581460 @default.
- W1556795890 hasConceptScore W1556795890C55493867 @default.
- W1556795890 hasConceptScore W1556795890C79879829 @default.
- W1556795890 hasConceptScore W1556795890C86803240 @default.
- W1556795890 hasConceptScore W1556795890C95444343 @default.
- W1556795890 hasIssue "17" @default.
- W1556795890 hasLocation W15567958901 @default.
- W1556795890 hasOpenAccess W1556795890 @default.
- W1556795890 hasPrimaryLocation W15567958901 @default.