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Updated: Jul 19, 2026

Multiomics Analysis of TMEM200A as a Pan-Cancer Biomarker
Published on: September 15, 2023
RET is constitutively activated by novel tandem mutations that alter the active site resulting in multiple endocrine
Aaron N Cranston1, Cristiana Carniti, Kim Oakhill
1Cancer Research UK Department of Oncology, Cambridge Institute for Medical Research, University of Cambridge, Cambridge, UK. aaron.cranston@ntlworld.com
Abstract:
Constitutive activation of the RET receptor tyrosine kinase underlies the genesis and progression of multiple endocrine neoplasia type 2 (MEN 2), a dominantly inherited cancer predisposition. Importantly, although kinase activation represents a common theme in neoplasias, not all activating mutations are functionally equivalent. Consistent with this, we ascertained a patient with classical features of MEN 2B, but lacking either of the classical mutations in RET (M918T or A883F). Instead, the patient harbors a novel pair of germ line missense mutations in cis at codons 804 and 805. We evaluated the potential physiochemical effects of these substitutions in silico, predicting both to be moderately deleterious in isolation, but severely deleterious in combination. Consistent with this postulate, we show that the identified tandem mutations (V804M/E805K) are biologically active, transforming cells in culture and that their transforming capacity in combination is distinctly synergistic. Furthermore, the V804M/E805K tandem lesion confers resistance to the small molecule receptor tyrosine kinase inhibitor, PP1, suggesting a mode of action distinct from that known for classical MEN 2B mutations. To address this question, we used homology molecular modeling in silico to model the active site of RET. We predict that RET804 constitutes a critical gatekeeper residue that, when mutated in combination with RET805, induces a conformational change in the hinge region that locks the active site in a position permissive for ATP hydrolysis. Our findings have implications both in the clinic and in the successful development of novel kinase-targeted anticancer drugs.
Insights
A novel RET gene mutation pair causes a rare cancer syndrome, multiple endocrine neoplasia type 2B. This tandem mutation confers drug resistance, offering new therapeutic targets.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Multiple endocrine neoplasia type 2 (MEN 2) is a dominantly inherited cancer predisposition driven by the RET receptor tyrosine kinase.
- Activating RET mutations are key in MEN 2 pathogenesis, but their functional impact varies.
Observation:
- A patient with MEN 2B lacked classical RET mutations (M918T, A883F) but had a novel cis-acting tandem mutation (V804M/E805K).
- In silico analysis predicted isolated mutations to be deleterious, with combined mutations being severely so.
Findings:
- The V804M/E805K tandem mutation demonstrated synergistic transforming activity in cell cultures.
- This mutation conferred resistance to the RET inhibitor PP1, suggesting a distinct mechanism of action.
- Molecular modeling indicated the V804M/E805K mutation alters the RET active site conformation, locking it in an active state.
Implications:
- These findings highlight the functional heterogeneity of RET mutations in MEN 2.
- The novel mutation and its drug resistance profile have significant clinical implications for MEN 2 diagnosis and treatment.
- Understanding this unique mechanism can guide the development of novel, targeted anticancer therapies.
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