Literature DB >> 20207997

A new type of membrane raft-like microdomains and their possible involvement in TCR signaling.

Pavel Otáhal1, Pavla Angelisová, Matous Hrdinka, Tomás Brdicka, Petr Novák, Karel Drbal, Václav Horejsí.   

Abstract

Membrane rafts and signaling molecules associated with them are thought to play important roles in immunoreceptor signaling. Rafts differ in their lipid and protein compositions from the rest of the membrane and are relatively resistant to solubilization by Triton X-100 or similar detergents, producing buoyant, detergent-resistant membranes (DRMs) that can be isolated by density gradient ultracentrifugation. One of the key signaling molecules present in T cell DRMs is the transmembrane adaptor protein LAT (linker for activation of T cells). In contrast to previous results, a recent study demonstrated that a LAT construct not present in the buoyant DRMs is fully able to support TCR signaling and development of T cells in vivo. This finding caused doubts about the real physiological role of rafts in TCR signaling. In this study, we demonstrate that these results can be explained by the existence of a novel type of membrane raft-like microdomains, producing upon detergent solubilization "heavy DRMs" containing a number of membrane molecules. At a moderate level of expression, LAT supported TCR signaling more efficiently than constructs targeted to the microdomains producing heavy DRMs or to nonraft membrane. We suggest that different types of membrane microdomains provide environments regulating the functional efficiencies of signaling molecules present therein.

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Year:  2010        PMID: 20207997     DOI: 10.4049/jimmunol.0902075

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  21 in total

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Review 6.  A tale of two TRAPs: LAT and LAB in the regulation of lymphocyte development, activation, and autoimmunity.

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Review 7.  n-3 Fatty acids uniquely affect anti-microbial resistance and immune cell plasma membrane organization.

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Review 8.  Lipid raft redox signaling: molecular mechanisms in health and disease.

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9.  Dynamic Reorganization and Correlation among Lipid Raft Components.

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Review 10.  Emerging roles for protein S-palmitoylation in immunity from chemical proteomics.

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