Identification and characterization of two related murine genes, Eat2a and Eat2b, encoding single SH2-domain adapters
pmid: 16425036
Identification and characterization of two related murine genes, Eat2a and Eat2b, encoding single SH2-domain adapters
Human EAT-2 (SH2D1B) and SLAM-associated protein (SAP) (SH2D1A) are single SH2-domain adapters, which bind to specific tyrosine residues in the cytoplasmic tail of six signaling lymphocytic activation molecule (SLAM) (SLAMF1)-related receptors. Here we report that, unlike in humans, the mouse and rat Eat2 genes are duplicated with an identical genomic organization. The coding regions of the mouse Eat2a and Eat2b genes share 91% identity at the nucleotide level and 84% at the protein level; similarly, segments of introns are highly conserved. Whereas expression of mouse Eat2a mRNA was detected in multiple tissues, Eat2b was only detectable in mouse natural killer cells, CD8+ T cells, and ovaries, suggesting a very restricted tissue expression of the latter. Both the EAT-2A and EAT-2B coimmunoprecipitated with mouse SLAM in transfected cells and augmented tyrosine phosphorylation of the cytoplasmic tail of SLAM. Both EAT-2A and EAT-2B bind to the Src-like kinases Fyn, Hck, Lyn, Lck, and Fgr, as determined by a yeast two-hybrid assay. However, unlike SAP, the EAT-2 proteins bind to their kinase domains and not to the SH3 domain of these kinases. Taken together, the data suggest that both EAT-2A and EAT-2B are adapters that recruit Src kinases to SLAM family receptors using a mechanism that is distinct from that of SAP.
- National Institute of Allergy and Infectious Diseases United States
- National Institute of Health Pakistan
- The University of Texas Southwestern Medical Center United States
- University of Debrecen Hungary
- Harvard University United States
Expressed Sequence Tags, Chromosomes, Artificial, Bacterial, Sequence Homology, Amino Acid, Molecular Sequence Data, Immunoglobulins, Receptors, Cell Surface, Rats, Mice, Inbred C57BL, Mice, Mice, Congenic, Signaling Lymphocytic Activation Molecule Family Member 1, Antigens, CD, Animals, Amino Acid Sequence, Phosphorylation, Cells, Cultured, Adaptor Proteins, Signal Transducing, Glycoproteins, Protein Binding, Signal Transduction
Expressed Sequence Tags, Chromosomes, Artificial, Bacterial, Sequence Homology, Amino Acid, Molecular Sequence Data, Immunoglobulins, Receptors, Cell Surface, Rats, Mice, Inbred C57BL, Mice, Mice, Congenic, Signaling Lymphocytic Activation Molecule Family Member 1, Antigens, CD, Animals, Amino Acid Sequence, Phosphorylation, Cells, Cultured, Adaptor Proteins, Signal Transducing, Glycoproteins, Protein Binding, Signal Transduction
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