Yuan Xue, Yuhong Ning, Verena Friedl, David Haan, Anna Bergamaschi, Gulfem D. Guler, Kyle Hazen, Aaron Scott, Tierney Phillips, Erin McCarthy, Christopher K. Ellison, Roger Malta, Albert Nguyen, Vanessa López, Romola Cavet, Melissa Peters, Judith Sheard, William J. Gibb, Shimul Chowdhury, Wayne Volkmuth, Samuel Levy
5-hydroxymethylcytosine (5hmC) is a stable epigenomic mark associated with gene regulation and tumorigenesis. To evaluate its potential for multi-cancer detection, epigenomic distribution of 5hmC was analyzed in tumor tissues (n = 217), normal tissues (n = 50), and cell-free DNA (cfDNA) from cancer (n = 1009) and non-cancer subjects (n = 1678) across breast, colon, lung, ovarian, and pancreatic cancers. Differential analysis revealed extensive redistribution of 5hmC in early-stage tumors that persisted into the late-stage, while global 5hmC abundance decreased in all tumors. Two distinct patterns of hydroxymethylation distribution were identified: one common across cancers and another tissue specific. Differential hydroxymethylation regions (DhmRs) that were tumor tissue specific had significantly improved cancer prediction in cfDNA. A multinomial logistic regression model was trained on tissue-specific DhmRs to predict Tissue of Tumor Origin (TOTO) of cfDNA with 85.2% accuracy. These findings demonstrate that stable, cancer-specific 5hmC signatures appear to be established early in tumorigenesis persist throughout disease progression, suggesting 5hmC as a potential pan-cancer marker for early and late-stage tumor detection via liquid biopsy.