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Role of TFG sequences outside the coiled-coil domain in TRK-T3 oncogenic activation
Emanuela Roccato1, Sonia Pagliardini, Loredana Cleris
1Operative Unit #3, Department of Experimental Oncology, Instituto Nazionale Tumori, Via G Venezian, Milan, Italy.
Abstract:
The TRK-T3 oncoprotein, isolated from a human papillary thyroid tumor, arises from the fusion between the N-terminal domain of the TFG gene and the tyrosine kinase domain of the NTRK1 receptor. The 68 kDa TRK-T3 oncoprotein displays a constitutive tyrosine kinase activity resulting in its capability to transform NIH3T3 cells. The TFG portion of TRK-T3 contains a coiled-coil domain, which mediates protein oligomerization essential for the oncogene constitutive activation, and several consensus sites for protein interaction. In this study, we investigate the role of TFG sequences outside the coiled-coil domain on TRK-T3 activation, We constructed four mutants carrying different deletions of TFG sequences and expressed them in mammalian cells. By performing biochemical and biological assays we demonstrated that all the deleted regions are required for TRK-T3 activation, as they are involved in different mechanisms such as protein processing, formation of stable and/or functional complexes, and possible interaction with other proteins. By constructing site-specific mutants, we demonstrated a crucial role for a PB1 domain and a considerable contribution of an SH2-binding motif in TRK-T3 oncogenic activation. This work establishes an important role for TFG sequences outside the coiled-coil domain in the activation of the thyroid TRK-T3 oncogene.
Insights
The TRK-T3 oncoprotein requires specific TFG gene sequences beyond its coiled-coil domain for activation. These regions are crucial for protein processing, complex formation, and interaction, impacting thyroid cancer oncogenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The TRK-T3 oncoprotein, a fusion of TFG and NTRK1, drives papillary thyroid tumors via constitutive tyrosine kinase activity.
- The TFG portion's coiled-coil domain is known to mediate oligomerization and oncogene activation.
Purpose of the Study:
- To investigate the role of TFG sequences outside the coiled-coil domain in TRK-T3 oncoprotein activation.
- To identify specific TFG domains critical for TRK-T3 oncogenic function.
Main Methods:
- Construction and expression of TFG deletion mutants in mammalian cells.
- Biochemical and biological assays to assess TRK-T3 activation.
- Site-specific mutagenesis to analyze domain function.
Main Results:
- Deletion of TFG regions outside the coiled-coil domain abrogated TRK-T3 activation.
- These regions are involved in protein processing, complex formation, and protein interactions.
- A PB1 domain and an SH2-binding motif were identified as crucial for oncogenic activation.
Conclusions:
- TFG sequences outside the coiled-coil domain are essential for TRK-T3 activation.
- These regions contribute to oncogenesis through diverse mechanisms including protein interactions and complex stability.
- Understanding these interactions provides insights into thyroid cancer development.
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