Mutations in genome maintenance factors drive sporadic and hereditary breast cancers. Here, we searched for potential drivers based on germline DNA analysis from a cohort consisting of patients with early-onset breast cancer negative for BRCA1/BRCA2 mutations. This revealed candidate genes that subsequently were subjected to RNA interference-based (RNAi-based) phenotype screens to reveal genome integrity effects. We identified several genes with functional roles in genome maintenance, including Glucose-6-Phosphatase Catalytic Subunit 3 (G6PC3), SMC4, and CCDC108. Notably, G6PC3-deficient cells exhibited increased levels of γH2AX and micronuclei formation, along with defects in homologous recombination (HR) repair. Consistent with these observations, G6PC3 was required for the efficient recruitment of BRCA1 to sites of DNA double-strand breaks (DSBs). RNA-Seq analysis revealed that G6PC3 promotes the expression of multiple homologous recombination repair genes, including BRCA1. Through CRISPR-Select functional-genetic phenotype analysis of G6PC3 germline mutations, we identified 2 germline G6PC3 variants displaying partial loss of function. Furthermore, our study demonstrated that G6pc3 deficiency accelerates mammary tumor formation induced by Trp53 loss in mice. In conclusion, our cohort-based functional analysis has unveiled genome maintenance factors and identified G6PC3 as a potential candidate tumor suppressor in breast cancer.
G6PC3 promotes genome maintenance and is a candidate mammary tumor suppressor.
G6PC3 促进基因组维持,是一种候选的乳腺肿瘤抑制因子
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作者:Li Xin, Rossing Maria, Moisés da Silva Ana, Bose Muthiah, Gudjónsson Thorkell, Benada Jan, Thatte Jayashree, Johansen Jens Vilstrup, Börcsök Judit, van der Gulden Hanneke, Song Ji-Ying, Menezes Renée, Tajik Asma, Sena LucÃa, Szallasi Zoltan, Frödin Morten, Jonkers Jos, Nielsen Finn Cilius, Sørensen Claus Storgaard
| 期刊: | JCI Insight | 影响因子: | 6.100 |
| 时间: | 2025 | 起止号: | 2025 Apr 22; 10(11):e186747 |
| doi: | 10.1172/jci.insight.186747 | 研究方向: | 肿瘤 |
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