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PMID: 30143612 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Elevated H3K79 homocysteinylation causes abnormal gene expression during neural development and subsequent neural tube defects.

Nature communications ·Vol. 9 ·No. 1 ·2018-00-24 ·页码 3436

Zhang Q, Bai B, Mei X, Wan C, Cao H, Dan Li, Wang S, Zhang M, Wang Z, Wu J, Wang H, Huo J, Ding G, Zhao J, Xie Q, Wang L, Qiu Z, Zhao S, Zhang T

Abstract

Neural tube defects (NTDs) are serious congenital malformations. Excessive maternal homocysteine (Hcy) increases the risk of NTDs, while its mechanism remains elusive. Here we report the role of histone homocysteinylation in neural tube closure (NTC). A total of 39 histone homocysteinylation sites are identified in samples from human embryonic brain tissue using mass spectrometry. Elevated levels of histone KHcy and H3K79Hcy are detected at increased cellular Hcy levels in human fetal brains. Using ChIP-seq and RNA-seq assays, we demonstrate that an increase in H3K79Hcy level down-regulates the expression of selected NTC-related genes including Cecr2, Smarca4, and Dnmt3b. In human NTDs brain tissues, decrease in expression of CECR2, SMARCA4, and DNMT3B is also detected along with high levels of Hcy and H3K79Hcy. Our results suggest that higher levels of Hcy contribute to the onset of NTDs through up-regulation of histone H3K79Hcy, leading to abnormal expressions of selected NTC-related genes.

MeSH 主题词
Adult Animals Brain/drug effects,metabolism Chick Embryo DNA (Cytosine-5-)-Methyltransferases/metabolism DNA Helicases/metabolism Female HEK293 Cells Histones/metabolism Homocysteine/analogs & derivatives,metabolism Humans Male Neural Tube Defects/metabolism Nuclear Proteins/metabolism Transcription Factors/metabolism Young Adult
化学物质
Cecr2 protein, human Histones Nuclear Proteins Transcription Factors Homocysteine homocysteine thiolactone DNA (Cytosine-5-)-Methyltransferases DNA methyltransferase 3B SMARCA4 protein, human DNA Helicases
作者与单位
共 19 位作者,点击展开单位 / ORCID
Zhang Qin
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Bai Baoling
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Mei Xinyu
Obstetrics & Gynecology Hospital of Fudan University, State Key Lab of Genetic, Engineering and Institutes of Biomedical Sciences, 200433, Shanghai, China.
Wan Chunlei
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Cao Haiyan
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Dan Li
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China. | Weifang Medical University, 261053, Weifang, China.
Wang Shan
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Zhang Min ORCID
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Wang Zhigang ORCID
Chinese Academy of Medical Sciences & Peking Union Medical College, 100005, Beijing, China.
Wu Jianxin
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Wang Hongyan
Obstetrics & Gynecology Hospital of Fudan University, State Key Lab of Genetic, Engineering and Institutes of Biomedical Sciences, 200433, Shanghai, China.
Huo Junsheng
Key Laboratory of Trace Element Nutrition of National Health and Family Planning Commission of the People's Republic of China, National Institute for Nutrition and Health, Chinese Center for Disease Control and Prevention, 102206, Beijing, China.
Ding Gangqiang
Key Laboratory of Trace Element Nutrition of National Health and Family Planning Commission of the People's Republic of China, National Institute for Nutrition and Health, Chinese Center for Disease Control and Prevention, 102206, Beijing, China.
Zhao Jianyuan
State Key Laboratory of Genetic Engineering and School of Life Sciences, Fudan University, 200438, Shanghai, China.
Xie Qiu
Chinese Academy of Medical Sciences & Peking Union Medical College, 100005, Beijing, China.
Wang Li ORCID
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Qiu Zhiyong
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China.
Zhao Shiming
Obstetrics & Gynecology Hospital of Fudan University, State Key Lab of Genetic, Engineering and Institutes of Biomedical Sciences, 200433, Shanghai, China. [email protected].
Zhang Ting
Beijing Municipal Key Laboratory of Child Development and Nutriomics, Capital Institute of Pediatrics, 100020, Beijing, China. [email protected].
Article Info
Journal
Nature communications
Abbr.
Nat Commun
ISSN
2041-1723
Published
2018-00-24
电子出版
2018-00-24
页码
3436
Language
English
Country/Region
England
NLM ID
101528555
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