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Published on: June 7, 2019
A common human skin tumour is caused by activating mutations in beta-catenin
1Howard Hughes Medical Institute, Department of Molecular Genetics and Cell Biology, The University of Chicago, Illinois 60637, USA.
Abstract:
WNT signalling orchestrates a number of developmental programs. In response to this stimulus, cytoplasmic beta-catenin (encoded by CTNNB1) is stabilized, enabling downstream transcriptional activation by members of the LEF/TCF family. One of the target genes for beta-catenin/TCF encodes c-MYC, explaining why constitutive activation of the WNT pathway can lead to cancer, particularly in the colon. Most colon cancers arise from mutations in the gene encoding adenomatous polyposis coli (APC), a protein required for ubiquitin-mediated degradation of beta-catenin, but a small percentage of colon and some other cancers harbour beta-catenin-stabilizing mutations. Recently, we discovered that transgenic mice expressing an activated beta-catenin are predisposed to developing skin tumours resembling pilomatricomas. Given that the skin of these adult mice also exhibits signs of de novo hair-follicle morphogenesis, we wondered whether human pilomatricomas might originate from hair matrix cells and whether they might possess beta-catenin-stabilizing mutations. Here, we explore the cell origin and aetiology of this common human skin tumour. We found nuclear LEF-1 in the dividing tumour cells, providing biochemical evidence that pilomatricomas are derived from hair matrix cells. At least 75% of these tumours possess mutations affecting the amino-terminal segment, normally involved in phosphorylation-dependent, ubiquitin-mediated degradation of the protein. This percentage of CTNNB1 mutations is greater than in all other human tumours examined thus far, and directly implicates beta-catenin/LEF misregulation as the major cause of hair matrix cell tumorigenesis in humans.
Insights
Pilomatricomas, common human skin tumors, originate from hair matrix cells. These tumors frequently exhibit mutations in the beta-catenin gene (CTNNB1), indicating WNT pathway misregulation drives their development.
Area of Science:
- Developmental biology
- Oncology
- Dermatology
Background:
- The WNT signaling pathway is crucial for development, regulating cell growth and differentiation through beta-catenin stabilization.
- Aberrant WNT signaling, particularly beta-catenin stabilization due to CTNNB1 mutations, is implicated in various cancers, including colon cancer.
- Transgenic mice with activated beta-catenin develop skin tumors resembling pilomatricomas, suggesting a potential link to hair follicle cells.
Purpose of the Study:
- To investigate the cellular origin of human pilomatricomas.
- To determine the role of beta-catenin stabilizing mutations in pilomatricoma development.
- To explore the aetiology of this common human skin tumor.
Main Methods:
- Analysis of nuclear LEF-1 expression in dividing tumor cells to identify cell of origin.
- Mutation analysis of the CTNNB1 gene in human pilomatricoma samples.
- Comparison of mutation frequencies with other human tumors.
Main Results:
- Nuclear LEF-1 was detected in dividing pilomatricoma cells, providing evidence for hair matrix cell origin.
- At least 75% of pilomatricomas harbor mutations in the CTNNB1 gene, specifically in the beta-catenin N-terminal region.
- The frequency of CTNNB1 mutations in pilomatricomas is higher than in most other human tumors analyzed.
Conclusions:
- Human pilomatricomas originate from hair matrix cells.
- Beta-catenin/LEF pathway misregulation, driven by CTNNB1 mutations, is a primary cause of pilomatricoma tumorigenesis.
- Pilomatricomas represent a significant example of WNT pathway-driven tumorigenesis in human skin.
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