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Bead Aggregation Assays for the Characterization of Putative Cell Adhesion Molecules
Published on: October 17, 2014
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.
Abstract:
The regulation of cadherin-mediated adhesion at the cell surface underlies several morphogenetic processes. To investigate the role of cadherin regulation in morphogenesis and to begin to analyze the molecular mechanisms of cadherin regulation, we have screened for monoclonal antibodies (mAbs) that allow us to manipulate the adhesive state of the cadherin molecule. Xenopus C-cadherin is regulated during convergent extension movements of gastrulation. Treatment of animal pole tissue explants (animal caps) with the mesoderm-inducing factor activin induces tissue elongation and decreases the strength of C-cadherin-mediated adhesion between blastomeres (Brieher, W.M., and B.M. Gumbiner. 1994. J. Cell Biol. 126:519-527). We have generated a mAb to C-cadherin, AA5, that restores strong adhesion to activin-treated blastomeres. This C-cadherin activating antibody strongly inhibits the elongation of animal caps in response to activin without affecting mesodermal gene expression. Thus, the activin-induced decrease in C-cadherin adhesive activity appears to be required for animal cap elongation. Regulation of C-cadherin and its activation by mAb AA5 involve changes in the state of C-cadherin that encompass more than changes in its homophilic binding site. Although mAb AA5 elicited a small enhancement in the functional activity of the soluble C-cadherin ectodomain (CEC1-5), it was not able to restore cell adhesion activity to mutant C-cadherin lacking its cytoplasmic tail. Furthermore, activin treatment regulates the adhesion of Xenopus blastomeres to surfaces coated with two other anti-C-cadherin mAbs, even though these antibodies probably do not mediate adhesion through a normal homophilic binding mechanism. Moreover, mAb AA5 restores strong adhesion to these antibodies. mAb AA5 only activates adhesion of blastomeres to immobilized CEC1-5 when it binds to C-cadherin on the cell surface. It does not work when added to CEC1-5 on the substrate. Together these findings suggest that the regulation of C-cadherin by activin and its activation by mAb AA5 involve changes in its cellular organization or interactions with other cell components that are not intrinsic to the isolated protein.
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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