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Distinct tyrosine autophosphorylation sites negatively and positively modulate neu-mediated transformation
D L Dankort1, Z Wang, V Blackmore
1Institute for Molecular Biology and Biotechnology, McMaster University, Hamilton, Ontario, Canada.
Abstract:
A number of cytoplasmic signaling molecules are thought to mediate mitogenic signaling from the activated Neu receptor tyrosine kinase through binding specific phosphotyrosine residues located within the intracellular portion of Neu/c-ErbB-2. An activated neu oncogene containing tyrosine-to-phenylalanine substitutions at each of the known autophosphorylation sites was generated and assessed for its specific transforming potential in Rat1 and NIH 3T3 fibroblasts. Mutation of these sites resulted in a dramatic impairment of the transforming potential of neu. To assess the role of these tyrosine phosphorylation sites in cellular transformation, the transforming potential of a series of mutants in which individual tyrosine residues were restored to this transformation-debilitated neu mutant was evaluated. Reversion of any one of four mutated sites to tyrosine residues restored wild-type transforming activity. While each of these transforming mutants displayed Ras-dependent signaling, the transforming activity of two of these mutants was correlated with their ability to bind either the GRB2 or SHC adapter molecules that couple receptor tyrosine kinases to the Ras signaling pathway. By contrast, restoration of a tyrosine residue located at position 1028 completely suppressed the basal transforming activity of this mutated neu molecule or other transforming neu molecules which possessed single tyrosine residues. These data argue that the transforming potential of activated neu is mediated both by positive and negative regulatory tyrosine phosphorylation sites.
Insights
Activated Neu receptor tyrosine kinase (RTK) signaling involves critical tyrosine phosphorylation sites. Mutating these sites impairs transformation, but restoring specific sites rescues activity, revealing both positive and negative regulatory roles.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- The Neu receptor tyrosine kinase (RTK), also known as c-ErbB-2, plays a role in mitogenic signaling.
- Cytoplasmic signaling molecules mediate signals from activated Neu RTK through phosphotyrosine binding.
Purpose of the Study:
- To investigate the role of specific tyrosine phosphorylation sites in the intracellular domain of Neu/c-ErbB-2 in cellular transformation.
- To determine how mutations and restorations of these sites affect the transforming potential of the Neu oncogene.
Main Methods:
- Generated an activated neu oncogene with tyrosine-to-phenylalanine substitutions at known autophosphorylation sites.
- Assessed the transforming potential of wild-type and mutant neu in Rat1 and NIH 3T3 fibroblasts.
- Evaluated the effect of restoring individual tyrosine residues to a transformation-debilitated mutant.
Main Results:
- Mutation of autophosphorylation sites dramatically impaired neu's transforming potential.
- Restoring any one of four specific tyrosine residues rescued wild-type transforming activity.
- While some mutants showed Ras-dependent signaling and bound GRB2 or SHC adapter molecules, one tyrosine residue (position 1028) suppressed basal transforming activity.
Conclusions:
- The transforming potential of activated Neu is regulated by both positive and negative tyrosine phosphorylation sites.
- Specific tyrosine residues mediate coupling to the Ras signaling pathway via adapter molecules like GRB2 and SHC.
- Tyrosine phosphorylation at position 1028 acts as a negative regulator of Neu-mediated transformation.
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