Carbachol stimulates binding of a photoreactive calmodulin derivative to calmodulin-binding proteins in intact SK-N-SH human neuroblastoma cells
Calmodulin (CaM) mediates the Ca(2+)-dependent activation of many enzyme systems in accordance with its cellular localization. We have described previously a muscarinic receptor-mediated translocation of CaM from membranes into the cytosol of SK-N-SH human neuroblastoma cells. To explore the potenti...
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Veröffentlicht in: | The Journal of biological chemistry 1992-03, Vol.267 (9), p.5847-5854 |
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Zusammenfassung: | Calmodulin (CaM) mediates the Ca(2+)-dependent activation of many enzyme systems in accordance with its cellular localization.
We have described previously a muscarinic receptor-mediated translocation of CaM from membranes into the cytosol of SK-N-SH
human neuroblastoma cells. To explore the potential targets (CaM-binding proteins, CaMBP) for CaM upon translocation, a photoreactive
CaM derivative was introduced into living SK-N-SH cells using a scrape-loading technique. Scrape-loading incorporated rhodamine
isothiocyanate-labeled CaM with an efficiency of 38%. CaM-diazopyruvamide (CaM-DAP), a Ca(2+)-dependent and CaM-specific probe,
was also introduced into the cells. The muscarinic agonist carbachol stimulated a translocation of CaM from membranes into
cytosol in CaM-DAP-loaded SK-N-SH cells. Upon photochemical cross-linking, cross-linked adducts of CaM-CaMBP were detected
by immunoblotting with anti-CaM antibody. Carbachol stimulated increased photoaffinity labeling of three proteins with relative
adduct molecular masses of 70, 120, and 180 kDa. The time course of labeling for the 70- and 120-kDa adducts showed maximal
increased by 15-30 min. The 180-kDa adduct displayed a slower time course of maximal labeling, with increases maintained for
2-4 h. Subtracting the molecular mass of CaM, carbachol stimulated binding to CaMBPs of 55, 105, and 163 kDa. Predominant
cellular CaMBP were identified using a biotinylated CaM overlay procedure. Western blot analysis indicated the expression
of specific CaM-dependent enzymes such as calcineurin, phosphodiesterase, the beta-isoform (rat brain) of CaM kinase II, and
Ca(2+)-ATPase. Numerous cytoskeletal CaMBP were expressed such as microtubule-associated protein-2, spectrin, tubulin, caldesmon,
adducin, and neuromodulin. Of the CaMBP expressed, phosphodiesterase, calcineurin, caldesmon, and adducin cross-linked with
CaM-DAP in the loaded SK-N-SH cells. Carbachol stimulated the time-dependent CaM-DAP labeling of calcineurin and adducin.
This study demonstrates the novel incorporation of a photoreactive CaM derivative into living cells, as well as muscarinic
receptor-activated CaM-DAP interaction with several cellular CaMBP. We postulate that carbachol-stimulated CaM translocation
in SK-N-SH cells may affect the activity of CaM-dependent enzymes and may alter aspects of cytoskeletal function. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1016/S0021-9258(18)42631-2 |