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Characterizing interactions in E-cadherin assemblages

delete2023-08-01
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OA
AI
S
Sayane Shome
K
Kejue Jia
S
Sanjeevi Sivasankar
R
Robert L. Jernigan *
DOI:10.1016/j.bpj.2023.06.009delete
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Abstract

Abstract

En 中文
Cadherin intermolecular interactions are critical for cell-cell adhesion and play essential roles in tissue formation and the maintenance of tissue structures. In this study, we focus on E-cadherin, a classical cadherin that connects epithelial cells, to understand how they interact in cis and trans conformations when attached to the same cell or opposing cells. We employ coevo-lutionary sequence analysis and molecular dynamics simulations to confirm previously known interaction sites as well as to identify new interaction sites. The sequence coevolutionary results yield a surprising result indicating that there are no strongly favored intermolecular interaction sites, which is unusual and suggests that many interaction sites may be possible, with none being strongly preferred over others. By using molecular dynamics, we test the persistence of these interactions and how they facilitate adhesion. We build several types of cadherin assemblages, with different numbers and combinations of cis and trans interfaces to understand how these conformations act to facilitate adhesion. Our results suggest that, in addition to the established interaction sites on the EC1 and EC2 domains, an additional plausible cis interface at the EC3-EC5 domain exists. Furthermore, we identify specific mutations at cis/trans binding sites that impair adhesion within E-cadherin assemblages.
Keywords:
PROTEIN-INTERACTION
MUTATIONS
SEQUENCE
BINDING
COOPERATIVITY
INFERENCE
CONTACTS
TRANS
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Journal

Biophysical Journal cover
Biophysical Journal
IF:
3.1
Papers:
5.0W
Citations:
4.4W

Organization

I
Iowa State University
Scholars:
2.1W
Papers: 1.8W
Citations: 2.5W
University of California System cover
University of California System
Scholars:
37.5W
Papers: 33.7W
Citations: 6.6K