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Updated: Sep 17, 2025

Author Spotlight: Exploring the Role of FAM83A in Cervical Cancer
Published on: February 9, 2024
FAM72A promotes UNG2 degradation and mutagenesis in human cancer cells
Yuqing Feng1,2, Philip Barbulescu3, Chetan K Chana4,5
1Department of Immunology, University of Toronto, Toronto, ON, M5S 1A8, Canada. yqfeng@yorku.ca.
Abstract:
Genetic lesions drive cancer development and progression, and understanding their origins will reveal the mechanisms of carcinogenesis. We showed that murine FAM72A promotes mutagenic DNA repair during antibody maturation by acting as a substrate adaptor of the CTLHMKLN1 E3 ligase to induce the proteasome degradation of Uracil DNA glycosylase 2 (UNG2), a pivotal enzyme of the base excision repair. In humans, the FAM72 gene has expanded to include four paralogues named FAM72A-D. Bioinformatic studies suggested that the human FAM72 genes are overexpressed in a broad range of cancers. However, the functional roles of FAM72A-D in human biology and cancer are unknown. Here, we show that FAM72 family members are minimally expressed in most healthy tissues except for thymus, and that FAM72A, B and D are overexpressed in primary tumorigenic tissues. Human FAM72 expression inversely correlates with UNG2 protein level in human cell lines and primary tumorigenic tissues suggesting that human FAM72 promotes UNG2 degradation. However, only FAM72A is able to bind to and induce UNG2 degradation in human cells. Our results suggest that the ability of FAM72A to induce UNG2 degradation contributes to neoplasia in a variety of cancer types by promoting mutagenic repair of genomic dUs.
Insights
The FAM72A gene promotes cancer by degrading UNG2, a DNA repair enzyme. This leads to mutagenic DNA repair, contributing to neoplasia across various cancer types.
Area of Science:
- Genetics
- Molecular Biology
- Cancer Research
Background:
- Genetic lesions are key drivers of cancer development.
- Understanding DNA repair mechanisms is crucial for elucidating carcinogenesis.
- The FAM72 gene family, expanded in humans, is implicated in cancer, but its function remains unclear.
Purpose of the Study:
- To investigate the functional roles of human FAM72A-D in cancer.
- To determine the mechanism by which FAM72 family members influence DNA repair and cancer progression.
Main Methods:
- Bioinformatic analysis of FAM72 gene expression in healthy and cancerous tissues.
- Experimental validation of FAM72 family member interactions with Uracil DNA glycosylase 2 (UNG2).
- Assessment of FAM72A's ability to induce UNG2 degradation in human cells.
Main Results:
- FAM72A, B, and D are overexpressed in primary tumors but minimally expressed in healthy tissues.
- Human FAM72 expression inversely correlates with UNG2 protein levels.
- Only FAM72A directly binds to and degrades UNG2 in human cells, promoting mutagenic repair.
Conclusions:
- FAM72A contributes to neoplasia by inducing UNG2 degradation, thereby promoting mutagenic repair of genomic uracil.
- The FAM72A-UNG2 axis represents a potential therapeutic target in various cancer types.
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