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“Identification Card”: Sites on Histone Modification of Cancer Cell 被引量:2

“Identification Card”: Sites on Histone Modification of Cancer Cell
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摘要 Formation of malignant tumor originating from normal healthy cell is a multistep process including genetic and epigenetic lesions. Previous studies of cell line model systems displayed that early important epigenetic events happened in stepwise fashion prior to cell immortalization. Once these epigenetic alterations are integrated into chromatin, they will perform vertical propagation through cell subculture. Hence, status of epigenetics is dramatically important in maintaining of cell identity. Histone modification is another factor of epigenetic alterations during human oncogenesis. Histones, one of main components of chromatin, can be modified post-translationally. Histone tail modifications are regulated by corresponding modification enzymes. This review focuses on the description of relationship between the main sites of histone modification and oncogenesis. Formation of malignant tumor originating from normal healthy cell is a multistep process including genetic and epigenetic lesions. Previous studies of cell line model systems displayed that early important epigenetic events happened in stepwise fashion prior to cell immortalization. Once these epigenetic alterations are integrated into chromatin, they will perform vertical propagation through cell subculture. Hence, status of epigenetics is dramatically important in maintaining of cell identity. Histone modification is another factor of epigenetic alterations during human oncogenesis. Histones, one of main components of chromatin, can be modified post-translationally. Histone tail modifications are regulated by corresponding modification enzymes. This review focuses on the description of relationship between the main sites of histone modification and oncogenesis.
出处 《Chinese Medical Sciences Journal》 CAS CSCD 2015年第4期203-209,共7页 中国医学科学杂志(英文版)
基金 Supported by the Natural Science Foundation of China(81173257)
关键词 HISTONE modification EPIGENETICS ONCOGENESIS METHYLATION HISTONE ACETYLATION cancer histone modification epigenetics oncogenesis methylation histone acetylation cancer
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  • 1LAN Fei1 & SHI Yang 2 1 Department of Biology, Constellation Pharmaceuticals, 148 Sidney Street, Cambridge, MA 02139, USA 2 Department of Pathology, Harvard Medical School, 77 Ave Louise Pasteur, Boston MA, 02115, USA.Epigenetic regulation: methylation of histone and non-histone proteins[J].Science China(Life Sciences),2009,52(4):311-322. 被引量:27
  • 2Danielle Queiroz Calcagno,Carolina Oliveira Gigek,Elizabeth Suchi Chen,Rommel Rodriguez Burbano,Marília de Arruda Cardoso Smith.DNA and histone methylation in gastric carcinogenesis[J].World Journal of Gastroenterology,2013,19(8):1182-1192. 被引量:14
  • 3Yuan-Yu Wang,Zai-Yuan Ye,Zhong-Sheng Zhao,Li Li,Yong-Xiang Wang,Hou-Quan Tao,Hui-Ju Wang,Xu-Jun He.Clinicopathologic significance of miR-10b expression in gastric carcinoma[J]. Human Pathology . 2013 (7)
  • 4Zhuo Zhang,Amanda Jones,Heui-Yun Joo,Dewang Zhou,Ying Cao,Shaoxia Chen,Hediye Erdjument-Bromage,Matthew Renfrow,Hang He,Paul Tempst,Tim M. Townes,Keith E. Giles,Ligeng Ma,Hengbin Wang.USP49 deubiquitinates histone H2B and regulates cotranscriptional pre-mRNA splicing[J]. Genes & Development . 2013 (14)
  • 5Jun Li,Zhou Wang,Yu Li.USP22 nuclear expression is significantly associated with progression and unfavorable clinical outcome in human esophageal squamous cell carcinoma[J]. Journal of Cancer Research and Clinical Oncology . 2012 (8)
  • 6Steven A. Johnsen.The enigmatic role of H2Bub1 in cancer[J]. FEBS Letters . 2012 (11)
  • 7Jia–Chu Li,Xin–Rong Yang,Hai–Xiang Sun,Yang Xu,Jian Zhou,Shuang–Jian Qiu,Ai–Wu Ke,Yue–Hong Cui,Zhi–Jun Wang,Wei–Min Wang,Kang–Da Liu,Jia Fan.Up-regulation of Krüppel-Like Factor 8 Promotes Tumor Invasion and Indicates Poor Prognosis for Hepatocellular Carcinoma[J]. Gastroenterology . 2010 (6)
  • 8Misri, S,Pandita, S,Kumar, R,Pandita, T K.Telomeres, histone code, and DNA damage response[J]. Cytogenetic and Genome Research . 2009 (3-4)
  • 9Xiao-Yong Zhang,Maya Varthi,Stephen M. Sykes,Charles Phillips,Claude Warzecha,Wenting Zhu,Anastasia Wyce,Alan W. Thorne,Shelley L. Berger,Steven B. McMahon.The Putative Cancer Stem Cell Marker USP22 Is a Subunit of the Human SAGA Complex Required for Activated Transcription and Cell-Cycle Progression[J]. Molecular Cell . 2008 (1)
  • 10Yue Zhao,Guillaume Lang,Saya Ito,Jacques Bonnet,Eric Metzger,Shun Sawatsubashi,Eriko Suzuki,Xavier Le Guezennec,Hendrik G. Stunnenberg,Aleksey Krasnov,Sofia G. Georgieva,Roland Schüle,Ken-Ichi Takeyama,Shigeaki Kato,László Tora,Didier Devys.A TFTC/STAGA Module Mediates Histone H2A and H2B Deubiquitination, Coactivates Nuclear Receptors, and Counteracts Heterochromatin Silencing[J]. Molecular Cell . 2008 (1)

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