Live-cell tracking of ?-H2AX kinetics reveals the distinct modes of ATM and DNA-PK in the immediate response to DNA damage

被引:7
|
作者
Trakarnphornsombat, Watanya [1 ]
Kimura, Hiroshi [1 ,2 ]
机构
[1] Tokyo Inst Technol, Sch Life Sci & Technol, Dept Life Sci & Technol, Yokohama 2268501, Japan
[2] Tokyo Inst Technol, Inst Innovat Res, Cell Biol Ctr, Yokohama 2268503, Japan
基金
日本学术振兴会;
关键词
ATM; DNA-PK; DNA repair; H2AX; DNA double-strand breaks; STRAND BREAK REPAIR; HISTONE H2AX PHOSPHORYLATION; HOMOLOGOUS RECOMBINATION; ACETYLATION; MOF; CHROMATIN; REPLICATION; DYNAMICS; PATHWAY; GAMMA-H2AX;
D O I
10.1242/jcs.260698
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
DNA double-strand breaks (DSBs) are a serious form of DNA damage that can cause genetic mutation. On the induction of DSBs, histone H2AX becomes phosphorylated by kinases, including ataxia telangiectasia-mutated (ATM), ataxia telangiectasia and Rad3-related (ATR) and DNA-dependent protein kinase (DNA-PK). Phosphorylated H2AX (?-H2AX) can be a platform to recruit DNA repair machinery. Here, we analyzed the immediate early kinetics of ?-H2AX upon laser-induced DNA damage in ATM-proficient and-deficient living cells by using fluorescently labeled antigen-binding fragments specific for ?-H2AX. The accumulation kinetics of ?-H2AX were similar in both ATM-proficient and-deficient cells. However, ?-H2AX accumulation was delayed when the cells were treated with a DNA-PK inhibitor, suggesting that DNA-PK rapidly phosphorylates H2AX at DSB sites. Ku80 (also known as XRCC5), a DNA-PK subunit, diffuses freely in the nucleus without DNA damage, whereas ATM repeatedly binds to and dissociates from chromatin. The accumulation of ATM at damage sites was regulated by the histone H4K16 acetyltransferase MOF (also known as KAT8 in mammals), but its accumulation was not necessarily reflected in the ?-H2AX level. These results suggest distinct actions of ATM and DNA-PK in immediate ?-H2AX accumulation.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Osmotic Stress Interferes with DNA Damage Response and H2AX Phosphorylation in Human Keratinocytes
    Hoen, Laura
    Rudisch, Christoph
    Wick, Michael
    Indenbirken, Daniela
    Grundhoff, Adam
    Wegwitz, Florian
    Kalkhof, Stefan
    Hildebrand, Janosch
    CELLS, 2022, 11 (06)
  • [32] BAF53 is Critical for Focus Formation of γ-H2AX in Response to DNA Damage
    Park, Pan Kyu
    Kang, Dong Hyun
    Kwon, Hyockman
    ANIMAL CELLS AND SYSTEMS, 2009, 13 (04) : 405 - 409
  • [33] Synchronization in the cell cycle by inhibitors of DNA replication induces histone H2AX phosphorylation: an indication of DNA damage
    Kurose, A
    Tanaka, T
    Huang, X
    Traganos, F
    Darzynkiewicz, Z
    CELL PROLIFERATION, 2006, 39 (03) : 231 - 240
  • [34] DNA-PK inhibition causes a low level of H2AX phosphorylation and homologous recombination repair in Medaka (Oryzias latipes) cells
    Urushihara, Yusuke
    Kobayashi, Junya
    Matsumoto, Yoshihisa
    Komatsu, Kenshi
    Oda, Shoji
    Mitani, Hiroshi
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2012, 429 (3-4) : 131 - 136
  • [35] Diffusion of activated ATM explains γH2AX and MDC1 spread beyond the DNA damage site
    Danovski, Georgi
    Panova, Greta
    Keister, Bradley
    Georgiev, Georgi
    Atemin, Aleksandar
    Uzunova, Sonya
    Stamatov, Rumen
    Kanev, Petar-Bogomil
    Aleksandrov, Radoslav
    Blagoev, Krastan B.
    Stoynov, Stoyno S.
    ISCIENCE, 2024, 27 (09)
  • [36] Cytometry of ATM activation and histone H2AX phosphorylation to estimate extent of DNA damage induced by exogenous agents
    Tanaka, Toshiki
    Huang, Xuan
    Halicka, H. Dorota
    Zhao, Hong
    Traganos, Frank
    Albino, Anthony P.
    Dai, Wei
    Darzynkiewicz, Zbigniew
    CYTOMETRY PART A, 2007, 71A (09) : 648 - 661
  • [37] Phosphorylation of histone H2AX at M phase in human cells without DNA damage response
    Ichijima, Y
    Sakasai, R
    Okita, N
    Asahina, K
    Mizutani, S
    Teraoka, H
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2005, 336 (03) : 807 - 812
  • [38] Phosphorylation of histone H2AX at m phase in human cells without DNA damage response
    Ichijima, Yosuke
    Sakasai, Ryo
    Okita, Naoyuki
    Asahina, Kinji
    Teraoka, Hirobumi
    CELL STRUCTURE AND FUNCTION, 2005, 30 : 41 - 41
  • [39] MicroRNA-138 Modulates DNA Damage Response by Repressing Histone H2AX Expression
    Wang, Yemin
    Huang, Jen-Wei
    Li, Ming
    Cavenee, Webster K.
    Mitchell, Patrick S.
    Zhou, Xiaofeng
    Tewari, Muneesh
    Furnari, Frank B.
    Taniguchi, Toshiyasu
    MOLECULAR CANCER RESEARCH, 2011, 9 (08) : 1100 - 1111
  • [40] γH2AX: A potential DNA damage response biomarker for assessing toxicological risk of tobacco products
    Albino, Anthony P.
    Jorgensen, Ellen D.
    Rainey, Patrick
    Gillman, Gene
    Clark, T. Jeffrey
    Gietl, Diana
    Zhao, Hong
    Traganos, Frank
    Darzynkiewicz, Zbigniew
    MUTATION RESEARCH-GENETIC TOXICOLOGY AND ENVIRONMENTAL MUTAGENESIS, 2009, 678 (01) : 43 - 52