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Updated: Aug 11, 2026

Modeling Paracrine Noncanonical Wnt Signaling In Vitro
Published on: December 10, 2021
FGF signaling inhibitor, SPRY4, is evolutionarily conserved target of WNT signaling pathway in progenitor cells
1M&M Medical BioInformatics, Hongo, Japan.
Abstract:
WNT, FGF and Hedgehog signaling pathways network together during embryogenesis, tissue regeneration, and carcinogenesis. FGF16, FGF18, and FGF20 genes are targets of WNT-mediated TCF/LEF-beta-catenin-BCL9/BCL9L-PYGO transcriptional complex. SPROUTY (SPRY) and SPRED family genes encode inhibitors for receptor tyrosine kinase signaling cascades, such as those of FGF receptor family members and EGF receptor family members. Here, transcriptional regulation of SPRY1, SPRY2, SPRY3, SPRY4, SPRED1, SPRED2, and SPRED3 genes by WNT/beta-catenin signaling cascade was investigated by using bioinformatics and human intelligence (humint). Because double TCF/LEF-binding sites were identified within the 5'-promoter region of human SPRY4 gene, comparative genomics analyses on SPRY4 orthologs were further performed. SPRY4-FGF1 locus at human chromosome 5q31.3 and FGF2-NUDT6-SPATA5-SPRY1 locus at human chromosome 4q27-q28.1 were paralogous regions within the human genome. Chimpanzee SPRY4 gene was identified within NW_107083.1 genome sequence. Human, chimpanzee, rat and mouse SPRY4 orthologs, consisting of three exons, were well conserved. SPRY4 gene was identified as the evolutionarily conserved target of WNT/beta-catenin signaling pathway based on the conservation of double TCF/LEF-binding sites within 5'-promoter region of mammalian SPRY4 orthologs. Human SPRY4 mRNA was expressed in embryonic stem (ES) cells, brain, pancreatic islet, colon cancer, head and neck tumor, melanoma, and pancreatic cancer. WNT signaling activation in progenitor cells leads to the growth regulation of progenitor cells themselves through SPRY4 induction, and also to the growth stimulation of proliferating cells through FGF secretion. Epigenetic silencing and loss-of-function mutations of SPRY4 gene in progenitor cells could lead to carcinogenesis. SPRY4 is the pharmacogenomics target in the fields of oncology and regenerative medicine.
Insights
The WNT/beta-catenin pathway regulates SPRY4, a gene crucial for cell growth and development. SPRY4
Area of Science:
- Molecular Biology
- Genetics
- Developmental Biology
Background:
- WNT, FGF, and Hedgehog pathways are key in development and disease.
- SPRY and SPRED genes inhibit receptor tyrosine kinase signaling.
- WNT signaling regulates target genes involved in cell growth.
Purpose of the Study:
- Investigate WNT/beta-catenin regulation of SPRY and SPRED genes.
- Determine SPRY4's role as a WNT target.
- Assess SPRY4's implications in cancer and regenerative medicine.
Main Methods:
- Bioinformatics analysis.
- Comparative genomics of SPRY4 orthologs.
- Identification of TCF/LEF-binding sites in SPRY4 promoter.
Main Results:
- SPRY4 is a conserved WNT/beta-catenin target gene.
- Conserved TCF/LEF-binding sites in mammalian SPRY4 promoters.
- SPRY4 is expressed in various human tissues and cancers.
- SPRY4 links WNT signaling to FGF secretion and cell growth.
Conclusions:
- SPRY4 is an evolutionarily conserved WNT target gene.
- SPRY4 dysregulation (silencing, mutation) may cause cancer.
- SPRY4 is a potential pharmacogenomic target for oncology and regenerative medicine.
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