Literature DB >> 10400315

Heterotrimetric Gi/o proteins control cyclic AMP oscillations and cytoskeletal structure assembly in primary human granulosa-lutein cells.

D Saltarelli1.   

Abstract

In granulosa cells, the luteinising hormone (LH) and the follicle-stimulating hormone (FSH) receptors are coupled to the adenylyl cyclase-cAMP pathway. We identified at least eight different G proteins belonging to three families--Gs, Gq, and Gi/o--in primary human granulosa-lutein cells. By exploring the function of Gi/o by time-lapse and digital-imaging microscopy of live cells, we found that the reversible actin stress fibre-dependent cytoplasmic retraction of pre-luteinised cells in primary culture is a highly sensitive and quite rapid system allowing detection of an intracellular cAMP surge. This morphology was characterised by maintenance of connexin43-dependent cell-cell contacts and that of microtubule-directed cell processes attached to the substrate and to neighbouring cells. Inhibitors of cyclic nucleotide phosphodiesterase subfamily type 4 (PDE-4), hLH and hFSH provoked this reversible cAMP-dependent phenotype in a temporal-, spatial- and dose-dependent manner. Gi/o inhibited adenylyl cyclase in membranes, and cell treatment with islet-activating protein (IAP) caused the cAMP-dependent retracted phenotype. It is concluded that the basal intracellular cAMP level is kept within a narrow range of concentrations, below the threshold for disassembly of stress fibres, through Gs, Gi/o, adenylyl cyclases and phosphodiesterase-4. This work supports the paradigm that switching of the agonist-occupied receptors to Gs and Gi/o would control both the intracellular bursts of cAMP (through the gonadotropin-catalysed activation of Gs) and the basal cAMP (through a Gi/o-mediated braking effect).

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Year:  1999        PMID: 10400315     DOI: 10.1016/s0898-6568(99)00012-1

Source DB:  PubMed          Journal:  Cell Signal        ISSN: 0898-6568            Impact factor:   4.315


  1 in total

1.  Glycosylation Pattern and in vitro Bioactivity of Reference Follitropin alfa and Biosimilars.

Authors:  Laura Riccetti; Samantha Sperduti; Clara Lazzaretti; Danièle Klett; Francesco De Pascali; Elia Paradiso; Silvia Limoncella; Francesco Potì; Simonetta Tagliavini; Tommaso Trenti; Eugenio Galano; Angelo Palmese; Abhijeet Satwekar; Jessica Daolio; Alessia Nicoli; Maria Teresa Villani; Lorenzo Aguzzoli; Eric Reiter; Manuela Simoni; Livio Casarini
Journal:  Front Endocrinol (Lausanne)       Date:  2019-07-24       Impact factor: 5.555

  1 in total

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