Influence of Estrogens on GH-Cell Network Dynamics in Females: A Live in Situ Imaging Approach

Author:

Schaeffer Marie1234,Hodson David J.123,Meunier Anne-Cécile123,Lafont Chrystel1,Birkenstock Jérôme12,Carmignac Danielle5,Murray Joanne F.6,Gavois Elodie123,Robinson Iain C.5,Le Tissier Paul5,Mollard Patrice123

Affiliation:

1. Centre National de la Recherche Scientifique (M.S., D.J.H., A.-C.M., C.L., J.B., E.G., P.M.), Unité Mixte de Recherche (UMR)-5203, Institute of Functional Genomics

2. Institut National de la Santé et de la Recherche Médicale (M.S., D.J.H., A.-C.M., J.B., E.G., P.M.), Unité 661

3. Universities of Montpellier 1 and 2 (M.S., D.J.H.,. A.-C.M., E.G., P.M.), UMR-5203, F-34000 Montpellier, France

4. Royal College of Surgeons in Ireland (M.S.), Dublin 2, Ireland

5. National Institute for Medical Research (D.C., I.C.R., P.L.T.), Division of Molecular Neuroendocrinology, London NW7 1AA, United Kingdom

6. School of Life Sciences (J.F.M.), University of Westminster, London, W1W 6UW, United Kingdom

Abstract

The secretion of endocrine hormones from pituitary cells finely regulates a multitude of homeostatic processes. To dynamically adapt to changing physiological status and environmental stimuli, the pituitary gland must undergo marked structural and functional plasticity. Endocrine cell plasticity is thought to primarily rely on variations in cell proliferation and size. However, cell motility, a process commonly observed in a variety of tissues during development, may represent an additional mechanism to promote plasticity within the adult pituitary gland. To investigate this, we used multiphoton time-lapse imaging methods, GH-enhanced green fluorescent protein transgenic mice and sexual dimorphism of the GH axis as a model of divergent tissue demand. Using these methods to acutely (12 h) track cell dynamics, we report that ovariectomy induces a dramatic and dynamic increase in cell motility, which is associated with gross GH-cell network remodeling. These changes can be prevented by estradiol supplementation and are associated with enhanced network connectivity as evidenced by increased coordinated GH-cell activity during multicellular calcium recordings. Furthermore, cell motility appears to be sex-specific, because reciprocal alterations are not detected in males after castration. Therefore, GH-cell motility appears to play an important role in the structural and functional pituitary plasticity, which is evoked in response to changing estradiol concentrations in the female.

Publisher

The Endocrine Society

Subject

Endocrinology

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