Properties and regulation of the thyrotropin receptor in the FRTL5 rat thyroid cell line

Endocrinology
|May 1, 1986
PubMed

Insights

Researchers found that TSH receptor binding on FRTL5 cells is enhanced in a specific buffer. TSH binding sites exhibit different affinities, and TSH can regulate receptor levels, indicating a physiological role in thyroid function.

Area of Science:

  • Endocrinology
  • Cell Biology
  • Molecular Biology

Background:

  • FRTL5 cells are widely used for studying thyroid-stimulating hormone (TSH) and anti-TSH receptor antibodies.
  • However, the properties of TSH receptors on FRTL5 cells remain poorly understood due to negligible TSH binding in standard culture media.

Purpose of the Study:

  • To characterize the TSH receptor binding properties on FRTL5 cells.
  • To investigate the influence of buffer composition and cations on TSH binding.
  • To explore the regulation of TSH receptor expression by TSH.

Main Methods:

  • TSH binding assays were performed on confluent FRTL5 cell monolayers using Krebs-Ringer bicarbonate (KRB) buffer and a modified KRB buffer with sucrose substitution for NaCl.
  • Kinetic studies were conducted to determine binding site affinities and capacities.
  • Up- and down-regulation experiments were performed by manipulating TSH presence in the culture medium.

Main Results:

  • Specific TSH binding was readily demonstrated in FRTL5 cells when cultured in KRB buffer.
  • TSH binding was significantly enhanced in a modified KRB buffer lacking NaCl.
  • Kinetic analysis revealed two TSH binding sites with distinct affinities and capacities, with NaCl reducing binding capacity.
  • TSH induced concentration-dependent up- and down-regulation of receptor expression without altering affinity.
  • Physiological responses correlated with higher-affinity TSH receptor occupancy.

Conclusions:

  • TSH receptor binding on FRTL5 cells can be effectively studied in a KRB buffer system.
  • The presence of two TSH binding sites with different affinities is suggested.
  • TSH-induced down-regulation of its own receptors is a physiological response in FRTL5 cells.

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