Structural and proteomic repercussions of growth hormone receptor deficiency on the pituitary gland: Lessons from a translational pig model

Author:

Shashikadze Bachuki1ORCID,Franzmeier Sophie2ORCID,Hofmann Isabel2ORCID,Kraetzl Martin34ORCID,Flenkenthaler Florian1ORCID,Blutke Andreas2ORCID,Fröhlich Thomas1ORCID,Wolf Eckhard134ORCID,Hinrichs Arne34ORCID

Affiliation:

1. Laboratory for Functional Genome Analysis (LAFUGA), Gene Center Ludwig‐Maximilians‐Universität München Munich Germany

2. Institute of Veterinary Pathology at the Center for Clinical Veterinary Medicine, Ludwig‐Maximilians‐Universität München Munich Germany

3. Chair for Molecular Animal Breeding and Biotechnology, Gene Center and Department of Veterinary Sciences Ludwig‐Maximilians‐Universität München Munich Germany

4. Center for Innovative Medical Models (CiMM) Ludwig‐Maximilians‐Universität München Oberschleissheim Germany

Abstract

AbstractGrowth hormone receptor deficiency (GHRD) results in low serum insulin‐like growth factor 1 (IGF1) and high, but non‐functional serum growth hormone (GH) levels in human Laron syndrome (LS) patients and animal models. This study investigated the quantitative histomorphological and molecular alterations associated with GHRD. Pituitary glands from 6 months old growth hormone receptor deficient (GHR‐KO) and control pigs were analyzed using a quantitative histomorphological approach in paraffin (9 GHR‐KO [5 males, 4 females] vs. 11 controls [5 males, 6 females]), ultrathin sections tissue sections (3 male GHR‐KO vs. 3 male controls) and label‐free proteomics (4 GHR‐KO vs. 4 control pigs [2 per sex]). GHR‐KO pigs displayed reduced body weights (60% reduction in comparison to controls; p < .0001) and decreased pituitary volumes (54% reduction in comparison to controls; p < .0001). The volume proportion of the adenohypophysis did not differ in GHR‐KO and control pituitaries (65% vs. 71%; p = .0506) and GHR‐KO adenohypophyses displayed a reduced absolute volume but an unaltered volume density of somatotrophs in comparison to controls (21% vs. 18%; p = .3164). In GHR‐KO pigs, somatotroph cells displayed a significantly reduced volume density of granules (23.5%) as compared to controls (67.7%; p < .0001). Holistic proteome analysis of adenohypophysis samples identified 4660 proteins, of which 592 were differentially abundant between the GHR‐KO and control groups. In GHR‐KO samples, the abundance of somatotropin precursor was decreased, whereas increased abundances of proteins involved in protein production, transport and endoplasmic reticulum (ER) stress were revealed. Increased protein production and secretion as well as significantly reduced proportion of GH‐storing granules in somatotroph cells of the adenohypophysis without an increase in volume density of somatotroph cells in the adenohypophysis could explain elevated serum GH levels in GHR‐KO pigs.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Cellular and Molecular Neuroscience,Endocrine and Autonomic Systems,Endocrinology,Endocrinology, Diabetes and Metabolism

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