BMC Genomics,2021年
Huajun Zheng, Sichao Song, Xuefei Zhang, Xiaofen Liu, Xin Li, Jing Zhang, Meiqing Feng, Xiang Li, Xingchen Bian
LicenseType:CC BY |
BMC Genomics,2017年
Xin Li, Pengcheng Yang, Yang Dong, Yanqun Liu, Yandong Ren, Lei Chen, Hui Liu, Wen Wang, Hui Xiang, Fangying Dai
LicenseType:Unknown |
3 GAPPadder: a sensitive approach for closing gaps on draft genomes with short sequence reads [期刊论文]
BMC Genomics,2019年
Chong Chu, Xin Li, Yufeng Wu
LicenseType:Unknown |
BMC Genomics,2023年
Xuemei Li, Yu Shan, Lianju Ma, Yueying Li, Xiaoning Ren, Xin Li, Jiahui Fan, Lanlan Wang
LicenseType:CC BY |
BMC Genomics,2023年
Xuemei Li, Yu Shan, Lianju Ma, Yueying Li, Xiaoning Ren, Xin Li, Jiahui Fan, Lanlan Wang
LicenseType:CC BY |
BMC Genomics,2023年
Yang Lu, Xuan Jiang, Qiang Cao, Yue Yu, Xin Li, Yazhou Sun
LicenseType:CC BY |
BackgroundDNA hypermethylation at promoter CpG islands (CGIs) is a hallmark of cancers and could lead to dysregulation of gene expression in the development of cancers, however, its dynamics and regulatory mechanisms remain elusive. Bivalent genes, that direct development and differentiation of stem cells, are found to be frequent targets of hypermethylation in cancers.ResultsHere we performed comprehensive analysis across multiple cancer types and identified that the decrease in H3K4me1 levels coincides with DNA hypermethylation at the bivalent promoter CGIs during tumorigenesis. Removal of DNA hypermethylation leads to increment of H3K4me1 at promoter CGIs with preference for bivalent genes. Nevertheless, the alteration of H3K4me1 by overexpressing or knockout LSD1, the demethylase of H3K4, doesn’t change the level or pattern of DNA methylation. Moreover, LSD1 was found to regulate the expression of a bivalent gene OVOL2 to promote tumorigenesis. Knockdown of OVOL2 in LSD1 knockout HCT116 cells restored the cancer cell phenotype.ConclusionIn summary, our work identified a universal indicator that can pre-mark DNA hypermethylation in cancer cells, and dissected the interplay between H3K4me1 and DNA hypermethylation in detail. Current study also reveals a novel mechanism underlying the oncogenic role of LSD1, providing clues for cancer therapies.