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Published on: April 23, 2017
DICAM, a novel dual immunoglobulin domain containing cell adhesion molecule interacts with alphavbeta3 integrin
Youn-Kwan Jung1, Jung-Suk Jin, Jae-Hwan Jeong
1Department of Biochemistry and Cell Biology, Kyungpook National University, Daegu, Republic of Korea.
Insights
We discovered DICAM, a novel cell adhesion molecule with dual Ig domains. DICAM mediates cell-cell adhesion through specific interaction with the alphavbeta3 integrin, impacting tissue structure and function.
Area of Science:
- Cell biology
- Molecular biology
- Biochemistry
Background:
- Immunoglobulin (Ig) superfamily proteins play crucial roles in cell adhesion.
- The CTX protein family, known for diverse functions, includes cell adhesion molecules.
Purpose of the Study:
- To identify and characterize a novel cell adhesion molecule belonging to the CTX protein family.
- To elucidate the mechanism of action and binding partners of the newly identified molecule.
Main Methods:
- Identification and characterization of a novel protein, DICAM (Dual Ig domain containing cell adhesion molecule).
- Analysis of DICAM expression, subcellular localization, and its role in cell adhesion using cell culture models.
- Investigation of DICAM's interaction with integrins, specifically alphavbeta3, using adhesion assays and domain mapping.
Main Results:
- DICAM, a type I transmembrane protein with two Ig domains, is ubiquitously expressed.
- DICAM localizes to cell-cell contact regions, co-localizing with ZO-1, and enhances MDCK cell adhesion.
- DICAM-mediated cell adhesion is specific to the alphavbeta3 integrin, with Ig domain 2 being the primary interaction site.
Conclusions:
- DICAM is a novel dual Ig domain-containing cell adhesion molecule.
- DICAM mediates cell adhesion through specific binding to the alphavbeta3 integrin.
- DICAM's function is linked to cell-cell adhesion and potentially tight junction integrity.
Abstract:
Immunoglobulin (Ig) superfamily members are abundant with diverse functions including cell adhesion in various tissues. Here, we identified and characterized a novel adhesion molecule that belongs to the CTX protein family and named as DICAM (Dual Ig domain containing cell adhesion molecule). DICAM is a type I transmembrane protein with two V-type Ig domains in the extracellular region and a short cytoplasmic tail of 442 amino acids. DICAM is found to be expressed ubiquitously in various organs and cell lines. Subcellular localization of DICAM was observed in the cell-cell contact region and nucleus of cultured epithelial cells. Cell-cell contact region was colocalized with tight junction protein, ZO-1. The DICAM increased MDCK cell adhesion to 60% levels of fibronectin. DICAM mediated cell adhesion was specific for the alphavbeta3 integrin; other integrins, alpha2, alpha5, beta1, alpha2beta1, alpha5beta1, were not involved in cell adhesion. In identifying the interacting domain of DICAM with alphavbeta3, the Ig domain 2 showed higher cell adhesion activity than that of Ig domain 1. Although RGD motif in Ig domain 2 was engaged in cell adhesion, it was not participated in DICAM-alphavbeta3 mediated cell adhesion. Furthermore, differentially expressing DICAM stable cells showed well correlated cell to cell adhesion capability with integrin beta3-overexpressing cells. Collectively, these results indicate that DICAM, a novel dual Ig domain containing adhesion molecule, mediates cell adhesion via alphavbeta3 integrin.
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