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CD8 Raft localization is induced by its assembly into CD8alpha beta heterodimers, Not CD8alpha alpha homodimers
Dick John Pang1, Adrian C Hayday, Marie-José Bijlmakers
1Peter Gorer Department of Immunobiology, King's College London, School of Medicine at Guy's Hospital, London SE1 9RT, United Kingdom.
Insights
Human CD8alphabeta and CD8alphaalpha coreceptors have distinct functions. CD8alphabeta heterodimers localize to lipid rafts, unlike CD8alphaalpha homodimers, due to extracellular region assembly, not palmitoylation.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- CD8 coreceptor exists as CD8alphabeta heterodimers or CD8alphaalpha homodimers.
- CD8alphabeta is a more efficient T cell receptor coreceptor than CD8alphaalpha.
- CD8alphabeta's function is linked to lipid raft localization, a property not well understood for CD8alphaalpha.
Purpose of the Study:
- To investigate the differential localization of human CD8alphabeta and CD8alphaalpha to lipid rafts.
- To identify the molecular mechanisms governing CD8alphabeta and CD8alphaalpha localization.
- To clarify the functional distinction between CD8alphabeta and CD8alphaalpha.
Main Methods:
- Analysis of human CD8 protein localization in lipid rafts.
- Investigation of palmitoylation and cytoplasmic domain modifications.
- Use of chimeric CD8 proteins to map localization determinants.
Main Results:
- Palmitoylation of CD8alpha and CD8beta chains did not influence raft localization in human cells.
- Arginines in the cytoplasmic domain of CD8beta are crucial for raft localization.
- Heterodimerization of CD8alpha and CD8beta, driven by extracellular regions, dictates raft localization of CD8alphabeta.
- CD8alphaalpha homodimers do not localize to lipid rafts.
Conclusions:
- Lipid raft localization is a key distinguishing feature of human CD8alphabeta, differentiating it from CD8alphaalpha.
- Heterodimer assembly, particularly extracellular interactions, governs CD8alphabeta's raft association.
- These findings provide insights into the distinct functional roles of CD8alphabeta and CD8alphaalpha coreceptors.
Abstract:
The coreceptor CD8 is expressed as a CD8alphabeta heterodimer on major histocompatibility complex class I-restricted TCRalphabeta T cells, and as a CD8alphaalpha homodimer on subsets of memory T cells, intraepithelial lymphocytes, natural killer cells, and dendritic cells. Although the role of CD8alphaalpha is not well understood, it is increasingly clear that this protein is not a functional homologue of CD8alphabeta. On major histocompatibility complex class I-restricted T cells, CD8alphabeta is a more efficient TCR coreceptor than CD8alphaalpha. This property has for the mouse protein been attributed to the recruitment of CD8alphabeta into lipid rafts, which is dependent on CD8beta palmitoylation. Here, these divergent distributions of CD8alphabeta and CD8alphaalpha are demonstrated for the human CD8 proteins as well. However, although palmitoylation of both CD8alpha and CD8beta chains was detected, this modification did not contribute to raft localization. In contrast, arginines in the cytoplasmic domain are crucial for raft localization of CD8betabeta. Most strikingly, the assembly of a non-raft localized CD8beta chain with a non-raft localized CD8alpha chain resulted in raft-localized CD8alphabeta heterodimers. Using chimeric CD8 proteins, this property of the heterodimer was found to be determined by the assembly of CD8alpha and CD8beta extracellular regions. The presence of two CD8alpha extracellular regions, on the other hand, appears to preclude raft localization. Thus, heterodimer formation and raft association are intimately linked for CD8alphabeta. These results emphasize that lipid raft localization is a key feature of human CD8alphabeta that clearly distinguishes it from CD8alphaalpha.
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