PETCH-DB: a Portal for Exploring Tissue-specific and Complex disease-associated 5-Hydroxymethylcytosines

Author:

Cai Qinyun1,Zhang Zhou1,Cui Xiaolong2,Zeng Chang1,Cai Jiabin3,Cai Jiajun4,Wu Kai5,Zhang Xu6,Shi Yixiang7,Arvanitakis Zoe8,Bissonnette Marc A9,Chiu Brian C -H10,Cheng Shi-Yuan1112,He Chuan213,Zhang Wei1122ORCID

Affiliation:

1. Department of Preventive Medicine, Northwestern University Feinberg School of Medicine , 680 N. Lake Shore Dr., Chicago, IL 60611, USA

2. Department of Chemistry, The University of Chicago , 5735 S. Ellis Ave., Chicago, IL 60637, USA

3. Zhongshan Hospital, Fudan University , 180 Fenglin Rd., Shanghai 200032, China

4. Huashan Hospital, Fudan University , 12 Wulumuqi Rd., Shanghai 200040, China

5. Department of Thoracic Surgery, The First Affiliated Hospital of Zhengzhou University , 1 Jianshedong Rd., Zhengzhou, Henan Province 450052, China

6. Department of Medicine, University of Illinois , 808 S. Wood St., Chicago, IL 60612, USA

7. Bionova (Shanghai) Medical Technology Co., Ltd. , Building 42, 100 Banxia Rd., Shanghai 201318, China

8. Rush Alzheimer’s Disease Center, Rush University Medical Center , 1620 W. Harrison St., Chicago, IL 60612,  USA

9. Department of Medicine, The University of Chicago , 5841 S. Maryland Ave., Chicago, IL 60637, USA

10. Department of Public Health Sciences, The University of Chicago , 5841 S. Maryland Ave., Chicago, IL 60637, USA

11. The Ken and Ruth Davee Department of Neurology, Northwestern University Feinberg School of Medicine , 303 E. Superior St., Chicago, IL 60611, USA

12. The Robert H. Lurie Comprehensive Cancer Center, Northwestern University Feinberg School of Medicine , 303 E. Superior St., Chicago, IL 60611, USA

13. The Howard Hughes Medical Institute, The University of Chicago , 5735 S. Ellis Ave., Chicago, IL 60637, USA

Abstract

Abstract Epigenetic modifications play critical roles in gene regulation and disease pathobiology. Highly sensitive enabling technologies, including microarray- and sequencing-based approaches have allowed genome-wide profiling of cytosine modifications in DNAs in clinical samples to facilitate discovery of epigenetic biomarkers for disease diagnosis and prognosis. Historically, many previous studies, however, did not distinguish the most investigated 5-methylcytosines (5mC) from other modified cytosines, especially the biochemically stable 5-hydroxymethylcytosines (5hmC), which have been shown to have a distinct genomic distribution and regulatory role from 5mC. Notably, during the past several years, the 5hmC-Seal, a highly sensitive chemical labeling technique, has been demonstrated to be a powerful tool for genome-wide profiling of 5hmC in clinically feasible biospecimens (e.g. a few milliliter of plasma or serum). The 5hmC-Seal technique has been utilized by our team in biomarker discovery for human cancers and other complex diseases using circulating cell-free DNA (cfDNA), as well as the characterization of the first 5hmC Human Tissue Map. Convenient access to the accumulating 5hmC-Seal data will allow the research community to validate and re-use these results, potentially providing novel insights into epigenetic contribution to a range of human diseases. Here we introduce the PETCH-DB, an integrated database that was implemented to provide 5hmC-related results generated using the 5hmC-Seal technique. We aim the PETCH-DB to be a central portal, which will be available to the scientific community with regularly updated 5hmC data in clinical samples to reflect current advances in this field. Database URL http://petch-db.org/

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Information Systems

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