LEGARTOVÁ, Soňa, Paolo FAGHERAZZI, Pratik GOSWAMI, Václav BRÁZDA, Gabriela LOCHMANOVÁ, Irena KOUTNÁ and Eva BÁRTOVÁ. Irradiation potentiates p53 phosphorylation and p53 binding to the promoter and coding region of the TP53 gene. Biochimie. Elsevier, 2023, vol. 204, January, p. 154-168. ISSN 0300-9084. Available from: https://dx.doi.org/10.1016/j.biochi.2022.09.013.
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Basic information
Original name Irradiation potentiates p53 phosphorylation and p53 binding to the promoter and coding region of the TP53 gene
Authors LEGARTOVÁ, Soňa, Paolo FAGHERAZZI (380 Italy, belonging to the institution), Pratik GOSWAMI (356 India, belonging to the institution), Václav BRÁZDA, Gabriela LOCHMANOVÁ (203 Czech Republic, belonging to the institution), Irena KOUTNÁ and Eva BÁRTOVÁ (guarantor).
Edition Biochimie, Elsevier, 2023, 0300-9084.
Other information
Original language English
Type of outcome Article in a journal
Field of Study 10608 Biochemistry and molecular biology
Country of publisher France
Confidentiality degree is not subject to a state or trade secret
WWW URL
Impact factor Impact factor: 3.900 in 2022
RIV identification code RIV/00216224:14740/23:00130443
Organization unit Central European Institute of Technology
Doi http://dx.doi.org/10.1016/j.biochi.2022.09.013
UT WoS 000921740700001
Keywords in English p53; 53BP1; DNA damage; Epigenetics; Mass spectrometry; FLIM-FRET; AFM
Tags CF PROT, rivok
Tags International impact, Reviewed
Changed by Changed by: Mgr. Eva Dubská, učo 77638. Changed: 6/4/2024 22:43.
Abstract
An essential factor of the DNA damage response is 53BP1, a multimeric protein that inhibits the resection-dependent double-strand break (DBS) repair. The p53 protein is a tumor suppressor known as a guardian of the genome. Although the interaction between 53BP1 and its p53 partner is well-known in regulating gene expression, a question remains whether genome injury can affect the interaction between 53BP1 and p53 proteins or p53 binding to DNA. Here, using mass spectrometry, we determine post-translational modifications and interaction properties of 53BP1 and p53 proteins in non-irradiated and γ-irradiated cells. In addition, we used Atomic Force Microscopy (AFM) and Fluorescent Lifetime Imaging Microscopy combined with Fluorescence Resonance Energy Transfer (FLIM-FRET) for studies of p53 binding to DNA. Also, we used local laser microirradiation as a tool of advanced confocal microscopy, showing selected protein accumulation at locally induced DNA lesions. We observed that 53BP1 and p53 proteins accumulate at microirradiated chromatin but with distinct kinetics. The density of 53BP1 (53BP1pS1778) phosphorylated form was lower in DNA lesions than in the non-specified form. By mass spectrometry, we found 22 phosphorylations, 4 acetylation sites, and methylation of arginine 1355 within the DNA-binding domain of the 53BP1 protein (aa1219-1711). The p53 protein was phosphorylated on 8 amino acids and acetylated on the N-terminal domain. Post-translational modifications (PTMs) of 53BP1 were not changed in cells exposed to γ-radiation, while γ-rays increased the level of S6ph and S15ph in p53. Interaction analysis showed that 53BP1 and p53 proteins have 54 identical interaction protein partners, and AFM revealed that p53 binds to both non-specific and TP53-specific sequences (AGACATGCCTA GGCATGTCT). Irradiation by γ-rays enhanced the density of the p53 protein at the AGACATGCCTAGGCATGTCT region, and the binding of p53 S15ph to the TP53 promoter was potentiated in irradiated cells. These findings show that γ-irradiation, in general, strengthens the binding of phosphorylated p53 protein to the encoding gene.
Links
EF18_046/0015974, research and development projectName: Modernizace České infrastruktury pro integrativní strukturní biologii
GF19-29701L, research and development projectName: Funkce HDAC1 v T-buněčných lymfomech
Investor: Czech Science Foundation
LM2018127, research and development projectName: Česká infrastruktura pro integrativní strukturní biologii (Acronym: CIISB)
Investor: Ministry of Education, Youth and Sports of the CR
90242, large research infrastructuresName: CIISB III
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