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Published on: August 14, 2018
Four novel RET germline variants in exons 8 and 11 display an oncogenic potential in vitro
Marina Muzza1, Daniela Cordella, Johny Bombled
1Dipartimento di Scienze Mediche, Università degli Studi di Milano, 20122 Milan, Italy.
Context:
Most germline-activating mutations of the RET proto-oncogene associated with inherited medullary thyroid cancer (MTC) are localized in exons 10, 11 and 13-15. Four novel RET variants, located in the extracellular domain (p.A510V, p.E511K and p.C531R) coded by exon 8 and in the intracellular juxtamembrane region (p.K666N) coded by exon 11, were identified on the leukocyte DNA from apparently sporadic cases.
Methods:
Plasmids carrying Ret9-wild-type (Ret9-WT), Ret9-C634R and all Ret9 variants were transfected, and the phosphorylation levels of RET and ERK were evaluated by western blot analyses. The transforming potentials were assessed by the focus formation assay.
Results:
The p.A510V, p.E511K and p.C531R variants were found to generate RET and ERK phosphorylation levels and to have a transforming activity higher than that of Ret9-WT variant, but lower than that of Ret9-C634R variant. Differently, the p.K666N variant, located immediately downstream of the transmembrane domain, and involving a conserved residue, displayed high kinase and transforming activities. Computational analysis predicted non-conservative alterations in the mutant proteins consistent with putative modifications of the receptor conformation.
Conclusions:
The molecular analyses revealed an oncogenic potential for all the novel germline RET variants. Therefore, the prevalence of exon 8 genomic variations with an oncogenic potential may be higher than previously thought, and the analysis of this exon should be considered after the exclusion of mutations in the classical hotspots. In addition, on the basis of these functional data, it is advisable to extend the genetic screening to all the first-degree relatives of the MTC patients, and to perform a strict follow-up of familial carriers.
Insights
Four new RET gene variants were found to increase medullary thyroid cancer risk. Genetic screening of exon 8 is recommended for sporadic cases and families with medullary thyroid cancer.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Germline mutations in the RET proto-oncogene are linked to inherited medullary thyroid cancer (MTC), typically in specific exons.
- Four novel RET variants (p.A510V, p.E511K, p.C531R, p.K666N) were identified in individuals with seemingly sporadic MTC.
Purpose of the Study:
- To investigate the oncogenic potential of four newly identified RET variants.
- To assess the functional impact of these variants on RET kinase activity and cellular transformation.
Main Methods:
- Transfection of plasmids with wild-type and variant RET genes.
- Western blot analysis to evaluate RET and ERK phosphorylation.
- Focus formation assay to determine transforming potential.
- Computational analysis of predicted protein structure alterations.
Main Results:
- Variants p.A510V, p.E511K, and p.C531R showed increased RET and ERK phosphorylation and transforming activity compared to wild-type RET.
- The p.K666N variant exhibited high kinase and transforming activities, comparable to known activating mutations.
- Computational analysis suggested these variants alter receptor conformation.
Conclusions:
- All identified novel germline RET variants possess oncogenic potential.
- Exon 8 variations may contribute more significantly to MTC than previously recognized.
- Genetic screening of exon 8 and extended family screening are recommended for MTC patients.
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