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Membrane cofactor protein (MCP; CD46): isoform-specific tyrosine phosphorylation
G Wang1, M K Liszewski, A C Chan
1Division of Rheumatology, Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110, USA.
Abstract:
Membrane cofactor protein (MCP; CD46) is a widely expressed type 1 transmembrane glycoprotein that inhibits complement activation on host cells. It also is a receptor for several pathogens including measles virus, Streptococcus pyogenes, Neisseria gonorrhea, and Neisseria meningitidis. That MCP may have signaling capability was suggested by its microbial interactions. That is, binding of MCP on human monocytes by measles virus hemagglutinin or cross-linking by an anti-MCP Ab resulted in IL-12 down-regulation, while binding to MCP by Neisseria on epithelial cells produced a calcium flux. Through alternative splicing, MCP is expressed on most cells with two distinct cytoplasmic tails of 16 (CYT-1) or 23 (CYT-2) amino acids. These play pivotal roles in intracellular precursor processing and basolateral localization. We investigated the putative signal transduction pathway mediated by MCP and demonstrate that CYT-2, but not CYT-1, is phosphorylated on tyrosine. We examined MCP tail peptides and performed Ab cross-linking experiments on several human cell lines and MCP isoform transfectants. We found an MCP peptide of CYT-2 was phosphorylated by a src kinase system. Western blots of the cells lines demonstrated that cells bearing CYT-2 were also phosphorylated on tyrosine. Additionally, we provide genetic and biochemical evidence that the src family of kinases is responsible for the latter phosphorylation events. In particular, the src kinase, Lck, is required for phosphorylation of MCP in the Jurkat T cell line. Taken together, these studies suggest a src family-dependent pathway for signaling through MCP.
Insights
Membrane cofactor protein (MCP; CD46) signaling involves its CYT-2 tail, which is phosphorylated by src family kinases like Lck. This identifies a novel src-dependent pathway for MCP-mediated cellular responses.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Membrane cofactor protein (MCP; CD46) inhibits complement activation and acts as a pathogen receptor.
- MCP interactions with pathogens suggest potential signaling roles.
- MCP exists in isoforms with distinct cytoplasmic tails (CYT-1 and CYT-2).
Purpose of the Study:
- To investigate the signal transduction pathway mediated by MCP.
- To determine if MCP cytoplasmic tails are involved in signaling.
- To identify kinases responsible for MCP phosphorylation.
Main Methods:
- Analysis of MCP tail peptides.
- Antibody cross-linking experiments on human cell lines and MCP isoform transfectants.
- Western blotting and genetic/biochemical analysis to identify responsible kinases.
Main Results:
- MCP's CYT-2 tail, but not CYT-1, is phosphorylated on tyrosine.
- Src kinase systems phosphorylate MCP CYT-2 peptides.
- Src family kinases, particularly Lck, are responsible for MCP phosphorylation in cell lines.
Conclusions:
- MCP CYT-2 mediates signal transduction.
- A src family kinase-dependent pathway is involved in MCP signaling.
- Src kinases like Lck play a crucial role in MCP phosphorylation and signaling.