-
Je něco špatně v tomto záznamu ?
The effect of ATM kinase inhibition on the initial response of human dental pulp and periodontal ligament mesenchymal stem cells to ionizing radiation
J. Cmielova, R. Havelek, R. Kohlerova, T. Soukup, L. Bruckova, J. Suchanek, J. Vavrova, J. Mokry, M. Rezacova,
Jazyk angličtina Země Anglie, Velká Británie
Typ dokumentu časopisecké články
- MeSH
- dávka záření MeSH
- DNA vazebné proteiny antagonisté a inhibitory MeSH
- kultivované buňky MeSH
- lidé MeSH
- mezenchymální kmenové buňky cytologie fyziologie účinky záření MeSH
- nádorové supresorové proteiny antagonisté a inhibitory MeSH
- periodontální vaz cytologie fyziologie účinky záření MeSH
- protein-serin-threoninkinasy antagonisté a inhibitory MeSH
- proteiny buněčného cyklu antagonisté a inhibitory MeSH
- vztah dávky záření a odpovědi MeSH
- záření gama MeSH
- zubní dřeň cytologie fyziologie účinky záření MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- časopisecké články MeSH
PURPOSE: This study evaluates early changes in human mesenchymal stem cells (MSC) isolated from dental pulp and periodontal ligament after γ-irradiation and the effect of ataxia-telangiectasia mutated (ATM) inhibition. METHODS: MSC were irradiated with 2 and 20 Gy by (60)Co. For ATM inhibition, specific inhibitor KU55933 was used. DNA damage was measured by Comet assay and γH2AX detection. Cell cycle distribution and proteins responding to DNA damage were analyzed 2-72 h after the irradiation. RESULTS: The irradiation of MSC causes an increase in γH2AX; the phosphorylation was ATM-dependent. Irradiation activates ATM kinase, and the level of p53 protein is increased due to its phosphorylation on serine15. While this phosphorylation of p53 is ATM-dependent in MSC, the increase in p53 was not prevented by ATM inhibition. A similar trend was observed for Chk1 and Chk2. The increase in p21 is greater without ATM inhibition. ATM inhibition also does not fully abrogate the accumulation of irradiated MSC in the G2-phase of the cell-cycle. CONCLUSIONS: In irradiated MSC, double-strand breaks are tagged quickly by γH2AX in an ATM-dependent manner. Although phosphorylations of p53(ser15), Chk1(ser345) and Chk2(thr68) are ATM-dependent, the overall amount of these proteins increases when ATM is inhibited. In both types of MSC, ATM-independent mechanisms for cell-cycle arrest in the G2-phase are triggered.
Citace poskytuje Crossref.org
- 000
- 00000naa a2200000 a 4500
- 001
- bmc13031592
- 003
- CZ-PrNML
- 005
- 20131007121232.0
- 007
- ta
- 008
- 131002s2013 enk f 000 0|eng||
- 009
- AR
- 024 7_
- $a 10.3109/09553002.2013.775530 $2 doi
- 035 __
- $a (PubMed)23425510
- 040 __
- $a ABA008 $b cze $d ABA008 $e AACR2
- 041 0_
- $a eng
- 044 __
- $a enk
- 100 1_
- $a Cmielova, Jana $u Department of Medical Biochemistry, Faculty of Medicine in Hradec Kralove,Charles University in Prague, Czech Republic. cmielovaj@lfhk.cuni.cz
- 245 14
- $a The effect of ATM kinase inhibition on the initial response of human dental pulp and periodontal ligament mesenchymal stem cells to ionizing radiation / $c J. Cmielova, R. Havelek, R. Kohlerova, T. Soukup, L. Bruckova, J. Suchanek, J. Vavrova, J. Mokry, M. Rezacova,
- 520 9_
- $a PURPOSE: This study evaluates early changes in human mesenchymal stem cells (MSC) isolated from dental pulp and periodontal ligament after γ-irradiation and the effect of ataxia-telangiectasia mutated (ATM) inhibition. METHODS: MSC were irradiated with 2 and 20 Gy by (60)Co. For ATM inhibition, specific inhibitor KU55933 was used. DNA damage was measured by Comet assay and γH2AX detection. Cell cycle distribution and proteins responding to DNA damage were analyzed 2-72 h after the irradiation. RESULTS: The irradiation of MSC causes an increase in γH2AX; the phosphorylation was ATM-dependent. Irradiation activates ATM kinase, and the level of p53 protein is increased due to its phosphorylation on serine15. While this phosphorylation of p53 is ATM-dependent in MSC, the increase in p53 was not prevented by ATM inhibition. A similar trend was observed for Chk1 and Chk2. The increase in p21 is greater without ATM inhibition. ATM inhibition also does not fully abrogate the accumulation of irradiated MSC in the G2-phase of the cell-cycle. CONCLUSIONS: In irradiated MSC, double-strand breaks are tagged quickly by γH2AX in an ATM-dependent manner. Although phosphorylations of p53(ser15), Chk1(ser345) and Chk2(thr68) are ATM-dependent, the overall amount of these proteins increases when ATM is inhibited. In both types of MSC, ATM-independent mechanisms for cell-cycle arrest in the G2-phase are triggered.
- 650 _2
- $a proteiny buněčného cyklu $x antagonisté a inhibitory $7 D018797
- 650 _2
- $a kultivované buňky $7 D002478
- 650 _2
- $a DNA vazebné proteiny $x antagonisté a inhibitory $7 D004268
- 650 _2
- $a zubní dřeň $x cytologie $x fyziologie $x účinky záření $7 D003782
- 650 _2
- $a vztah dávky záření a odpovědi $7 D004307
- 650 _2
- $a záření gama $7 D005720
- 650 _2
- $a lidé $7 D006801
- 650 _2
- $a mezenchymální kmenové buňky $x cytologie $x fyziologie $x účinky záření $7 D059630
- 650 _2
- $a periodontální vaz $x cytologie $x fyziologie $x účinky záření $7 D010513
- 650 _2
- $a protein-serin-threoninkinasy $x antagonisté a inhibitory $7 D017346
- 650 _2
- $a dávka záření $7 D011829
- 650 _2
- $a nádorové supresorové proteiny $x antagonisté a inhibitory $7 D025521
- 655 _2
- $a časopisecké články $7 D016428
- 700 1_
- $a Havelek, Radim $u -
- 700 1_
- $a Kohlerova, Renata $u -
- 700 1_
- $a Soukup, Tomas $u -
- 700 1_
- $a Bruckova, Lenka $u -
- 700 1_
- $a Suchanek, Jakub $u -
- 700 1_
- $a Vavrova, Jirina $u -
- 700 1_
- $a Mokry, Jaroslav $u -
- 700 1_
- $a Rezacova, Martina $u -
- 773 0_
- $w MED00002370 $t International journal of radiation biology $x 1362-3095 $g Roč. 89, č. 7 (2013), s. 501-11
- 856 41
- $u https://pubmed.ncbi.nlm.nih.gov/23425510 $y Pubmed
- 910 __
- $a ABA008 $b sig $c sign $y a $z 0
- 990 __
- $a 20131002 $b ABA008
- 991 __
- $a 20131007121753 $b ABA008
- 999 __
- $a ok $b bmc $g 995679 $s 830037
- BAS __
- $a 3
- BAS __
- $a PreBMC
- BMC __
- $a 2013 $b 89 $c 7 $d 501-11 $i 1362-3095 $m International journal of radiation biology $n Int. j. radiat. biol. (Print) $x MED00002370
- LZP __
- $a Pubmed-20131002