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soc-2 encodes a leucine-rich repeat protein implicated in fibroblast growth factor receptor signaling
L M Selfors1, J L Schutzman, C Z Borland
1Department of Biology, Yale University, P.O. Box 208005, New Haven, CT 06520-8005, USA.
Abstract:
Activation of fibroblast growth factor (FGF) receptors elicits diverse cellular responses including growth, mitogenesis, migration, and differentiation. The intracellular signaling pathways that mediate these important processes are not well understood. In Caenorhabditis elegans, suppressors of clr-1 identify genes, termed soc genes, that potentially mediate or activate signaling through the EGL-15 FGF receptor. We demonstrate that three soc genes, soc-1, soc-2, and sem-5, suppress the activity of an activated form of the EGL-15 FGF receptor, consistent with the soc genes functioning downstream of EGL-15. We show that soc-2 encodes a protein composed almost entirely of leucine-rich repeats, a domain implicated in protein-protein interactions. We identified a putative human homolog, SHOC-2, which is 54% identical to SOC-2. We find that shoc-2 maps to 10q25, shoc-2 mRNA is expressed in all tissues assayed, and SHOC-2 protein is cytoplasmically localized. Within the leucine-rich repeats of both SOC-2 and SHOC-2 are two YXNX motifs that are potential tyrosine-phosphorylated docking sites for the SEM-5/GRB2 Src homology 2 domain. However, phosphorylation of these residues is not required for SOC-2 function in vivo, and SHOC-2 is not observed to be tyrosine phosphorylated in response to FGF stimulation. We conclude that this genetic system has allowed for the identification of a conserved gene implicated in mediating FGF receptor signaling in C. elegans.
Insights
Suppressors of clr-1 in C. elegans identify soc genes that mediate fibroblast growth factor (FGF) receptor signaling. SOC-2 and its human homolog SHOC-2 are conserved in FGF receptor pathways.
Area of Science:
- Cellular Biology
- Genetics
- Molecular Biology
Background:
- Fibroblast growth factor (FGF) receptors regulate crucial cellular processes like growth and differentiation.
- Intracellular signaling pathways activated by FGF receptors are not fully understood.
Purpose of the Study:
- Identify genes mediating fibroblast growth factor (FGF) receptor signaling in Caenorhabditis elegans.
- Characterize the function and conservation of identified signaling components.
Main Methods:
- Genetic screening in C. elegans to identify suppressors of clr-1 (soc genes).
- Biochemical characterization of the SOC-2 protein and its human homolog SHOC-2.
- Analysis of protein localization and potential phosphorylation sites.
Main Results:
- Three soc genes (soc-1, soc-2, sem-5) were identified as functioning downstream of the EGL-15 FGF receptor.
- soc-2 encodes a leucine-rich repeat protein with a conserved human homolog, SHOC-2.
- SHOC-2 is expressed ubiquitously and localized to the cytoplasm; specific phosphorylation sites are not essential for SOC-2 function.
Conclusions:
- The C. elegans genetic system successfully identified conserved genes involved in FGF receptor signaling.
- SOC-2/SHOC-2 plays a role in mediating FGF receptor pathway activation.
- Further investigation into the precise mechanism of SOC-2/SHOC-2 in FGF signaling is warranted.