Analysis of C-cadherin regulation during tissue morphogenesis with an activating antibody

Y Zhong1, W M Brieher, B M Gumbiner

  • 1Cellular Biochemistry and Biophysics Program, Memorial Sloan-Kettering Cancer Center, New York 10021, USA.

Insights

Monoclonal antibody AA5 restores cell adhesion by activating Xenopus C-cadherin, inhibiting tissue elongation during gastrulation. This suggests cadherin regulation involves cellular interactions beyond its binding site.

Area of Science:

  • Cell Biology
  • Developmental Biology
  • Biochemistry

Background:

  • Cadherin-mediated adhesion is crucial for morphogenesis.
  • Xenopus C-cadherin adhesion is regulated during gastrulation by activin, decreasing adhesion strength and promoting tissue elongation.
  • Understanding cadherin regulation mechanisms is key to understanding developmental processes.

Purpose of the Study:

  • To investigate the role of cadherin regulation in morphogenesis.
  • To analyze the molecular mechanisms of cadherin regulation.
  • To identify antibodies that can manipulate cadherin's adhesive state.

Main Methods:

  • Screening for monoclonal antibodies (mAbs) against Xenopus C-cadherin.
  • Treatment of animal pole tissue explants (animal caps) with activin.
  • Using mAb AA5 to restore adhesion to activin-treated blastomeres.
  • Analyzing effects on tissue elongation and mesodermal gene expression.
  • Testing mAb AA5's effect on soluble C-cadherin ectodomain and mutant C-cadherin.

Main Results:

  • mAb AA5 restores strong adhesion to activin-treated blastomeres.
  • This antibody inhibits activin-induced animal cap elongation without affecting mesodermal gene expression.
  • Activin regulates Xenopus blastomere adhesion to surfaces coated with other anti-C-cadherin mAbs.
  • mAb AA5 activates adhesion when binding to cell surface C-cadherin, not to immobilized ectodomain.

Conclusions:

  • Activin-induced decrease in C-cadherin adhesive activity is necessary for animal cap elongation.
  • Regulation and activation of C-cadherin involve changes beyond its homophilic binding site.
  • Cadherin regulation by activin and activation by mAb AA5 likely involve cellular organization or interactions with other cellular components.

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