Publications by authors named "C Cahoreau"

In order to study the intracellular cAMP response kinetics of Leydig cells to hormones with LH activity, we used MLTC-1 cells transiently expressing a chimeric cAMP-responsive luciferase so that real-time variations of intracellular cAMP concentration could be followed using oxiluciferin luminescence produced from catalyzed luciferin oxidation. The potencies of the different LHs and CGs were evaluated using areas under the curves (AUC) of their kinetics over 60 min stimulation. All mammalian LHs and CGs tested were found to stimulate cAMP accumulation in these cells.

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Glycoprotein hormones (GPHs) are the most complex molecules with hormonal activity. They exist only in vertebrates but the genes encoding their subunits' ancestors are found in most vertebrate and invertebrate species although their roles are still unknown. In the present report, we review the available structural and functional data concerning GPHs and their subunits' ancestors.

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Article Synopsis
  • The quaternary structures of human, bovine, and ovine Follicle-Stimulating Hormones (FSH) and Luteinizing Hormone (LH) were analyzed using sandwich ELISA methods, focusing on the stability of heterodimeric forms after thermal treatment.
  • Different FSH preparations showed varying thermal stability, with human and ovine FSH dissociating at higher temperatures (68-74 °C) compared to bovine FSH (61-64 °C), which was less stable.
  • Notably, some natural and recombinant forms of oFSH and hLH displayed resistance to high temperatures (up to 93 °C), suggesting covalent bonding between subunits, indicating potential inter-subunit connections
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Isolation of phosphatidyl-ethanolamine-binding protein-1 (PEBP-1) from bovine brain was described almost three decades ago but it required a large number of steps to reach high purity. After the fractionation of bovine testis proteins by ammonium sulfate precipitation we found that PEBP-1, detected by Western blotting, was among the very few proteins still soluble at 80% ammonium sulfate saturation (3.2M).

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Protein disulphide isomerase (PDI) in the endoplasmic reticulum catalyzes the rearrangement of disulphide bridges during folding of secreted proteins. It binds various molecules that inhibit its activity. But here, we looked for molecules that would potentiate its activity.

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