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TBC1d24-ephrinB2 interaction regulates contact inhibition of locomotion in neural crest cell migration.

Jaeho YoonYoo-Seok HwangMoonsup LeeJian SunHee Jun ChoLaura KnapikIra O Daar
Published in: Nature communications (2018)
Although Eph-ephrin signalling has been implicated in the migration of cranial neural crest (CNC) cells, it is still unclear how ephrinB transduces signals regulating this event. We provide evidence that TBC1d24, a putative Rab35-GTPase activating protein (Rab35 GAP), complexes with ephrinB2 via the scaffold Dishevelled (Dsh) and mediates a signal affecting contact inhibition of locomotion (CIL) in CNC cells. Moreover, we found that, in migrating CNC, the interaction between ephrinB2 and TBC1d24 negatively regulates E-cadherin recycling in these cells via Rab35. Upon engagement of the cognate Eph receptor, ephrinB2 is tyrosine phosphorylated, which disrupts the ephrinB2/Dsh/TBC1d24 complex. The dissolution of this complex leads to increasing E-cadherin levels at the plasma membrane, resulting in loss of CIL and disrupted CNC migration. Our results indicate that TBC1d24 is a critical player in ephrinB2 control of CNC cell migration via CIL.
Keyphrases
  • cell migration
  • induced apoptosis
  • cell cycle arrest
  • signaling pathway
  • cell death
  • pi k akt
  • binding protein