DDR1 and DDR2 physical interaction leads to signaling interconnection but with possible distinct functions

Coralie Croissant1, Adjanie Tuariihionoa2,3, Marion Bacou2

  • 1a Institute of Chemistry and Biology of Membranes and Nano-objects, UMR 5248, CNRS, University of Bordeaux, IPB, Bat. B14, Allée Geoffroy Saint Hilaire , Pessac , France.

Insights

High co-expression of discoidin domain receptors 1 and 2 (DDR1 and DDR2) has a negative impact on cell proliferation and migration. These receptors physically interact, suggesting a complex role in cellular functions.

Area of Science:

  • Cell biology
  • Molecular signaling

Background:

  • Discoidin domain receptors 1 and 2 (DDR1 and DDR2) are collagen-activated tyrosine kinase receptors involved in cell functions.
  • Limited knowledge exists on the co-expression and combined effects of DDR1 and DDR2.

Purpose of the Study:

  • To investigate the consequences of simultaneous DDR1 and DDR2 overexpression in cells.
  • To explore the interaction and distinct roles of DDR1 and DDR2 in cellular processes.

Main Methods:

  • Overexpression of DDR1, DDR2, or both in HEK 293T cells.
  • Utilized dominant-negative constructs (DDR1DN, DDR2DN) to differentiate intracellular activities.
  • Assessed cell proliferation, adhesion, migration, and signal activation (Erk, Jak2) via Western blot and co-immunoprecipitation.

Main Results:

  • Co-expression of DDR1 and DDR2 inhibited cell proliferation and migration, unlike DDR1 alone which promoted proliferation.
  • DDR1, but not DDR2, enhanced cell adhesion to collagen I.
  • Erk activation was higher in cells co-expressing DDR1 and DDR2.
  • A physical interaction between DDR1 and DDR2 was confirmed.

Conclusions:

  • High co-expression of DDR1 and DDR2 exerts a deleterious effect on cell proliferation and migration.
  • DDR1 and DDR2 physically interact, influencing cellular behavior in a complex manner.

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