Growth hormone receptor expression in the nucleus and cytoplasm of normal and neoplastic cells

D T Lincoln1, F Sinowatz, L Temmim-Baker

  • 1Department of Medical Science, Faculty of Allied Health, Kuwait University, Sulaibikhat.

Insights

Growth hormone (GH) receptors are widely distributed in various human and animal cells, including neoplastic tissues. These receptors are found in cell membranes, cytoplasm, and nuclei, with higher expression in tumor cells, suggesting GH

Area of Science:

  • Cell biology
  • Endocrinology
  • Immunohistochemistry

Background:

  • Growth hormone (GH) regulates metabolism, growth, and cell differentiation via specific receptors and signaling pathways.
  • GH receptor (GHR) presence and distribution were investigated across various cell types and tissues.

Purpose of the Study:

  • To map the presence and distribution of the GH receptor in normal and neoplastic tissues using immunohistochemistry.
  • To investigate the subcellular localization and expression patterns of the GH receptor.

Main Methods:

  • Utilized a panel of five monoclonal antibodies against the GH receptor's extracellular region.
  • Performed immunohistochemistry on normal and neoplastic tissues and cultured cells from human, rat, and rabbit.
  • Analyzed subcellular localization (membrane, cytoplasmic, nuclear, Golgi) and expression intensity.

Main Results:

  • GH receptors exhibit wide distribution across numerous cell types, including neoplastic cells.
  • Higher GHR expression and intensity were observed in neoplastic cells compared to normal tissues.
  • GHRs were localized in cell membranes, cytoplasm, nuclei, and the Golgi area, indicating synthesis and intracellular transport.
  • Nuclear GHR immunoreactivity was prominent in many instances.

Conclusions:

  • GH receptors are present in diverse cell types and are upregulated in neoplastic tissues.
  • Intracellular and nuclear localization of GHRs suggests complex signaling roles beyond the cell membrane.
  • GH appears essential for progenitor cell differentiation, clonal expansion, and maintenance in both normal and neoplastic contexts.

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