Glycosynapses: microdomains controlling carbohydrate-dependent cell adhesion and signaling

Author:

Hakomori Senitiroh1

Affiliation:

1. Pacific Northwest Research Institute; University of Washington, U.S.A.

Abstract

The concept of microdomains in plasma membranes was developed over two decades, following observation of polarity of membrane based on clustering of specific membrane components. Microdomains involved in carbohydrate-dependent cell adhesion with concurrent signal transduction that affect cellular phenotype are termed "glycosynapse". Three types of glycosynapse have been distinguished: "type 1" having glycosphingolipid associated with signal transducers (small G-proteins, cSrc, Src family kinases) and proteolipids; "type 2" having O-linked mucin-type glycoprotein associated with Src family kinases; and "type 3" having N-linked integrin receptor complexed with tetraspanin and ganglioside. Different cell types are characterized by presence of specific types of glycosynapse or their combinations, whose adhesion induces signal transduction to either facilitate or inhibit signaling. E.g., signaling through type 3 glycosynapse inhibits cell motility and differentiation. Glycosynapses are distinct from classically-known microdomains termed "caveolae", "caveolar membrane", or more recently "lipid raft", which are not involved in carbohydrate-dependent cell adhesion. Type 1 and type 3 glycosynapses are resistant to cholesterol-binding reagents, whereas structure and function of "caveolar membrane" or "lipid raft" are disrupted by these reagents. Various data indicate a functional role of glycosynapses during differentiation, development, and oncogenic transformation.

Publisher

FapUNIFESP (SciELO)

Subject

Multidisciplinary

Reference82 articles.

1. Expression of MUC1 mucin on activated human T cells: implications for a role of MUC1 in normal immune regulation;AGRAWAL B;Cancer Res,1998

2. The biological role of mucins in cellular interactions and immune regulation: prospects for cancer immunotherapy;AGRAWAL B;Mol Med Today,1998

3. Cancer-associated MUC1 mucin inhibits human T-cell proliferation, which is reversible by IL-2;AGRAWAL B;Nature Medicine,1998

4. The caveolae membrane system;ANDERSON RGW;Annu Rev Biochem,1998

5. Triton X-100-resistant membrane complexes from cultured kidney epithelial cells contain the Src family protein tyrosine kinase p62yes;ARREAZA G;J Biol Chem,1994

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