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Distinct endocytic responses of heteromeric and homomeric transforming growth factor beta receptors
R A Anders1, S L Arline, J J Doré
1Thoracic Research Unit, Mayo Clinic, Rochester, Minnesota 55905, USA.
Abstract:
Transforming growth factor beta (TGF beta) family ligands initiate a cascade of events capable of modulating cellular growth and differentiation. The receptors responsible for transducing these cellular signals are referred to as the type I and type II TGF beta receptors. Ligand binding to the type II receptor results in the transphosphorylation and activation of the type I receptor. This heteromeric complex then propagates the signal(s) to downstream effectors. There is presently little data concerning the fate of TGF beta receptors after ligand binding, with conflicting reports indicating no change or decreasing cell surface receptor numbers. To address the fate of ligand-activated receptors, we have used our previously characterized chimeric receptors consisting of the ligand binding domain from the granulocyte/macrophage colony-stimulating factor alpha or beta receptor fused to the transmembrane and cytoplasmic domain of the type I or type II TGF beta receptor. This system not only provides the necessary sensitivity and specificity to address these types of questions but also permits the differentiation of endocytic responses to either homomeric or heteromeric intracellular TGF beta receptor oligomerization. Data are presented that show, within minutes of ligand binding, chimeric TGF beta receptors are internalized. However, although all the chimeric receptor combinations show similar internalization rates, receptor down-regulation occurs only after activation of heteromeric TGF beta receptors. These results indicate that effective receptor down-regulation requires cross-talk between the type I and type II TGF beta receptors and that TGF beta receptor heteromers and homomers show distinct trafficking behavior.
Insights
Transforming growth factor beta (TGF beta) receptors are internalized upon ligand binding. Down-regulation of these TGF beta receptors requires heteromeric activation, indicating distinct trafficking behaviors for TGF beta receptor homomers and heteromers.
Area of Science:
- Cell Biology
- Molecular Biology
- Signal Transduction
Background:
- Transforming growth factor beta (TGF beta) signaling is crucial for cellular processes.
- Type I and Type II TGF beta receptors mediate these signals.
- The fate of TGF beta receptors after ligand binding is not well understood.
Purpose of the Study:
- To investigate the trafficking and down-regulation of TGF beta receptors after ligand binding.
- To differentiate endocytic responses to homomeric versus heteromeric TGF beta receptor oligomerization.
Main Methods:
- Utilized chimeric receptors combining ligand-binding domains with TGF beta receptor signaling domains.
- Measured internalization and down-regulation of chimeric TGF beta receptors following ligand stimulation.
- Differentiated responses based on homomeric and heteromeric receptor activation.
Main Results:
- Chimeric TGF beta receptors were internalized within minutes of ligand binding.
- Receptor down-regulation was observed only after heteromeric activation of TGF beta receptors.
- Internalization rates were similar across all chimeric receptor combinations.
Conclusions:
- Effective TGF beta receptor down-regulation necessitates cross-talk between Type I and Type II receptors.
- TGF beta receptor heteromers and homomers exhibit distinct intracellular trafficking patterns.
- Ligand-induced TGF beta receptor internalization is an early event, while down-regulation is dependent on receptor complex formation.