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Cellular mechanisms of RET receptor dysfunction in multiple endocrine neoplasia 2
Abstract:
Rearranged during transfection (RET) is a developmentally important receptor tyrosine kinase that has been identified as an oncogenic driver in a number of cancers. Activating RET point mutations gives rise to the inherited cancer syndrome multiple endocrine neoplasia type 2 (MEN2), characterized by medullary thyroid carcinoma. There are two MEN2 subtypes, MEN2A and MEN2B, that differ in tumour aggressiveness and the associated constellation of other disease features, which are caused by distinct patterns of RET amino acid substitution mutations. MEN2A-RET mutations affecting extracellular cysteine residues promote ligand-independent dimerization and constitutive RET activity, while MEN2B is caused by a single amino acid change in the tyrosine kinase domain of RET, releasing autoinhibition and producing a more active MEN2B-RET kinase that can promote signalling as monomers or dimers in the absence of a ligand. These mutations cause intrinsic biochemical changes in the RET structure and activation but also trigger extrinsic effects that alter RET cellular location, interactions and mechanisms of downregulation that can prolong or mislocate RET activity, changing or enhancing functional outcomes. Furthermore, changes in specific combinations of RET-mediated effects associated with different mutations give rise to the distinct MEN2 disease phenotypes. Here, we discuss the current understanding of the intrinsic and extrinsic characteristics of RET MEN2A cysteine and MEN2B mutants and how these contribute to transforming cellular processes and to the differences in tumour progression and disease aggressiveness.
Insights
Rearranged during transfection (RET) mutations drive cancer, including multiple endocrine neoplasia (MEN2). Different RET mutations cause distinct MEN2 subtypes (MEN2A and MEN2B) by altering protein structure and function, leading to varied tumor aggressiveness.
Area of Science:
- Oncogenic signaling pathways
- Receptor tyrosine kinases
- Cancer genetics
Background:
- Rearranged during transfection (RET) is a receptor tyrosine kinase crucial for development.
- Activating RET mutations are oncogenic drivers in various cancers.
- Specific RET mutations cause multiple endocrine neoplasia types 2A and 2B (MEN2A and MEN2B), inherited cancer syndromes.
Purpose of the Study:
- To elucidate the intrinsic and extrinsic characteristics of MEN2A and MEN2B RET mutants.
- To understand how these mutant RET proteins contribute to cellular transformation.
- To explain the differential tumor progression and aggressiveness observed in MEN2A and MEN2B.
Main Methods:
- Comparative analysis of RET protein structure and function in MEN2A and MEN2B.
- Investigation of RET mutations' effects on dimerization, kinase activity, and cellular localization.
- Examination of RET-mediated signaling alterations and downregulation mechanisms.
Main Results:
- MEN2A-RET mutations in cysteine residues promote ligand-independent dimerization and constitutive activity.
- MEN2B-RET mutations in the kinase domain release autoinhibition, leading to hyperactive monomers or dimers.
- Both mutation types induce intrinsic biochemical changes and extrinsic effects on RET localization and interactions.
Conclusions:
- Distinct RET mutations in MEN2A and MEN2B cause unique alterations in RET signaling.
- These alterations contribute to the differing tumor aggressiveness and disease phenotypes of MEN2 subtypes.
- Understanding these molecular differences is key to comprehending MEN2 pathogenesis.
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