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Showing papers by "Suet Yi Leung published in 2019"


Journal ArticleDOI
TL;DR: Investigation of the intragenic methylation loss at the three prime repair exonuclease 2 (TREX2) locus in laryngeal and colorectal cancer cases and in pan-cancer data from The Cancer Genome Atlas reveals a regulatory role of TREX2 DNA methylation for gene expression which might affect incidence and survival of larynx cancer.
Abstract: Genetic aberrations in DNA repair genes are linked to cancer, but less is reported about epigenetic regulation of DNA repair and functional consequences. We investigated the intragenic methylation loss at the three prime repair exonuclease 2 (TREX2) locus in laryngeal (n = 256) and colorectal cancer cases (n = 95) and in pan-cancer data from The Cancer Genome Atlas (TCGA). Significant methylation loss at an intragenic site of TREX2 was a frequent trait in both patient cohorts (p = 0.016 and < 0.001, respectively) and in 15 out of 22 TCGA studies. Methylation loss correlated with immunohistochemically staining for TREX2 (p < 0.0001) in laryngeal tumors and improved overall survival of laryngeal cancer patients (p = 0.045). Chromatin immunoprecipitation, demethylation experiments, and reporter gene assays revealed that the region of methylation loss can function as a CCAAT/enhancer binding protein alpha (CEBPA)-responsive enhancer element regulating TREX2 expression. The data highlight a regulatory role of TREX2 DNA methylation for gene expression which might affect incidence and survival of laryngeal cancer. Altered TREX2 protein levels in tumors may affect drug-induced DNA damage repair and provide new tailored therapies.

22 citations


Journal ArticleDOI
TL;DR: A user's guide, including detailed step-by-step protocols, to the establishment, isolation and verification of gastric cancer organoids and confirmation of cancer identity is provided.

21 citations


Journal ArticleDOI
TL;DR: A spotlight is shone on the cancer organoids platform's enormous potential for studying cancer biology and as a preclinical human tumor model that can facilitate drug discovery and personalized therapy.

6 citations