Related Experiment Videos
Signal transduction mediated by the truncated trkB receptor isoforms, trkB.T1 and trkB.T2
G T Baxter1, M J Radeke, R C Kuo
1Molecular Devices Corporation, Sunnyvale, California 94089, USA.
Abstract:
The trkB family of transmembrane proteins serves as receptors for BDNF and NT-4/5. The family is composed of a tyrosine kinase-containing isoform as well as several alternatively spliced "truncated receptors" with identical extracellular ligand-binding domains but very small intracellular domains. The two best-characterized truncated trkB receptors, designated as trkB.T1 and trkB.T2, contain intracellular domains of only 23 and 21 amino acids, respectively. Although it is known that the tyrosine kinase isoform (trkB.FL) is capable of initiating BDNF and NT-4/5-induced signal transduction, the functional role or roles of the truncated receptors remain enigmatic. At the same time, the potential importance of the truncated receptors in the development, maintenance, and regeneration of the nervous system has been highlighted by recent developmental and injury paradigm investigations. Here we have used trkB cDNA transfected cell lines to demonstrate that both trkB.T1 and trkB.T2 are capable of mediating BDNF-induced signal transduction. More specifically, BDNF activation of either trkB.T1 or trkB.T2 increases the rate of acidic metabolite release from the cell, a common physiological consequence of many signaling pathways. Further, these trkB.T1- and trkB. T2-mediated changes occur with kinetics distinct from changes mediated by trkB.FL, suggesting the participation of at least some unique rate-limiting component or components. Mutational analysis demonstrates that the isoform-specific sequences within the intracellular domains of each receptor are essential for signaling capability. Finally, inhibitor studies suggest that kinases are likely to be involved in the trkB.T1 and trkB.T2 signaling pathways.
Insights
Truncated trkB receptors (trkB.T1 and trkB.T2) can mediate brain-derived neurotrophic factor (BDNF) signaling, distinct from the full-length trkB receptor. Isoform-specific intracellular sequences are crucial for this signaling pathway.
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Signaling
Background:
- The trkB receptor family binds BDNF and NT-4/5.
- Truncated trkB receptors (trkB.T1, trkB.T2) have limited intracellular domains, unlike the signaling-competent trkB.FL.
- The function of truncated trkB receptors in the nervous system is largely unknown.
Purpose of the Study:
- To investigate the signaling capability of truncated trkB receptors (trkB.T1 and trkB.T2).
- To elucidate the functional role of truncated trkB receptors in BDNF-mediated signaling.
Main Methods:
- Utilized trkB cDNA transfected cell lines.
- Measured BDNF-induced acidic metabolite release.
- Performed mutational analysis of intracellular domains.
- Conducted kinase inhibitor studies.
Main Results:
- Both trkB.T1 and trkB.T2 mediate BDNF-induced signal transduction.
- BDNF activation of truncated receptors alters acidic metabolite release with distinct kinetics compared to trkB.FL.
- Isoform-specific intracellular sequences are essential for truncated receptor signaling.
- Kinases are likely involved in trkB.T1 and trkB.T2 signaling pathways.
Conclusions:
- Truncated trkB receptors possess signaling capabilities independent of trkB.FL.
- The intracellular domains of trkB.T1 and trkB.T2 play critical roles in mediating BDNF-induced signals.
- These findings reveal novel roles for truncated trkB receptors in neuronal signaling pathways.