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Oncogenic activation of RET by two distinct FMTC mutations affecting the tyrosine kinase domain

A Pasini1, O Geneste, P Legrand

  • 1Laboratoire de Génétique, UMR 5641 CNRS, Domaine Rockefeller, Université Claude Bernard Lyon 1, France.

Oncogene
|July 24, 1997
PubMed

Insights

New RET gene mutations (E768D, V804L) in familial medullary thyroid carcinoma (FMTC) activate the long RET51 isoform, but weakly. These gain-of-function mutations explain FMTC

Area of Science:

  • Oncology
  • Genetics
  • Molecular Biology

Background:

  • Multiple endocrine neoplasia type 2A (MEN2A) and familial medullary thyroid carcinoma (FMTC) are inherited disorders linked to RET proto-oncogene mutations.
  • Most mutations occur in the extracellular domain, causing constitutive RET kinase activation via homodimerization.

Purpose of the Study:

  • To investigate the functional impact of two novel FMTC-associated RET kinase domain mutations (E768D and V804L).
  • To compare the activity of these mutations in different RET isoforms (RET51 and RET9).

Main Methods:

  • Introducing FMTC mutations (E768D, V804L) into RET51 and RET9 isoforms.
  • Assessing autophosphorylation, fibroblast transformation, and neuronal differentiation in PC12 cells.
  • Comparing mutant RET activity to known MEN2A (C634R) and MEN2B (M918T) mutations.

Main Results:

  • The long RET51 isoform with E768D or V804L mutations showed autophosphorylation, fibroblast transformation, and induced PC12 cell differentiation.
  • However, RET51-FMTC mutants were less potent than RET51 with MEN2A or MEN2B mutations.
  • The short RET9 isoform with these mutations exhibited minimal autophosphorylation, oncogenic potential, or neuritic outgrowth induction.

Conclusions:

  • E768D and V804L are gain-of-function mutations conferring biological activity to the long RET51 isoform.
  • These FMTC mutations are weaker activators compared to MEN2A and MEN2B mutations.
  • The differential activity between RET isoforms may explain the restricted phenotype of these specific mutations to thyroid C-cells.

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