| Literature DB >> 23346550 |
Rakesh Kumar1, Nobuo Horikoshi, Mayank Singh, Arun Gupta, Hari S Misra, Kevin Albuquerque, Clayton R Hunt, Tej K Pandita.
Abstract
In order to survive, cells have evolved highly effective repair mechanisms to deal with the potentially lethal DNA damage produced by exposure to endogenous as well as exogenous agents. Ionizing radiation exposure induces highly lethal DNA damage, especially DNA double-strand breaks (DSBs), that is sensed by the cellular machinery and then subsequently repaired by either of two different DSB repair mechanisms: (1) non-homologous end joining, which re-ligates the broken ends of the DNA and (2) homologous recombination, that employs an undamaged identical DNA sequence as a template, to maintain the fidelity of DNA repair. Repair of DSBs must occur within the natural context of the cellular DNA which, along with specific proteins, is organized to form chromatin, the overall structure of which can impede DNA damage site access by repair proteins. The chromatin complex is a dynamic structure and is known to change as required for ongoing cellular processes such as gene transcription or DNA replication. Similarly, during the process of DNA damage sensing and repair, chromatin needs to undergo several changes in order to facilitate accessibility of the repair machinery. Cells utilize several factors to modify the chromatin in order to locally open up the structure to reveal the underlying DNA sequence but post-translational modification of the histone components is one of the primary mechanisms. In this review, we will summarize chromatin modifications by the respective chromatin modifying factors that occur during the DNA damage response.Entities:
Keywords: DNA repair; histone modifications
Year: 2013 PMID: 23346550 PMCID: PMC3551241 DOI: 10.3389/fonc.2012.00214
Source DB: PubMed Journal: Front Oncol ISSN: 2234-943X Impact factor: 6.244
Phosphorylation.
| Modification | Modifier | Histone | Role in DNA repair | Reference |
|---|---|---|---|---|
| pS139 | ATM, ATR, DNA-PKcs | H2AX | Recruits and accumulates DDR proteins (MDC1) to the repair lesion and promotes histone acetylation | |
| pT142 | WSTF | H2AX | Recruits activated ATM and MDC1 | |
| pT14 | CK2 | H4 | Promotes NHEJ by 53BP1 recruitment and methylation of H4K20 | |
| pS1 | CK2 | H4 | Role in DDR |
Methylation.
| Modification | Modifier | Histone | Role in DNA repair | Reference |
|---|---|---|---|---|
| K4me3 | SET1 | H3 | Stimulates V(D) J recombination via recombination activating gene (RAG) complex | |
| K9me3 | Suv3-9H1/ Suv3-9H2 | H3 | Interacts with HP1β, phosphorylates damage-induced HP1β, and activates TIP60 | |
| K36me2 | Metnase/SETMAR | H3 | Accumulates NBS1 and Ku to stimulate NHEJ | |
| K79me3 | DOT1 | H3 | Recruits RAD9 in budding yeast | |
| K20me2 | Suv4-20H1/Suv4-20H2;MMSET | H4 | Recruits DDR and repair proteins |
Histone acetylation.
| Modification | Modifier | Histone | Role in DNA repair | Reference |
|---|---|---|---|---|
| K5ac | TIP60 | H2AX | Helps in K119ub of H2AX and removal of H2AX from chromatin | |
| K36ac | CBP/p300 | H2AX | Recruits Ku during NHEJ | |
| K9ac, K14ac, K23ac K27ac | GCN5,CBP/p300 | H3 | Recruits SW1/SNF complex, promotes spreading of γ-H2AX domain and regulates ATM activity | |
| K18ac | GCN5,CBP/p300 | H3 | Regulates Ku protein recruitment during DSB repair | |
| K56ac | GCN5,CBP/p300, RTT109 | H3 | Depletes after IR to promote NHEJ, enriches K56ac after HR and UV repair | |
| K5ac, K8ac, K12ac, K16ac | MOF, TIP60-TRRAP; CBP/p300 | H4 | Recruits DDR and repair proteins and recruits SW1/SNF nucleosome remodeling complex |
Ubiquitination.
| Modification | Modifier | Histone | Role in DNA repair | Reference |
|---|---|---|---|---|
| K119ub/K119ub2, K119poly-ub | RNF8, RNF168 | H2A | Accumulates BRAC1 and 53BP1 for DNA repair | |
| K119ub/K119ub2, K119poly-ub | RNF8, RNF168, TIP60–UBC13 | H2AX | Recruits DDR proteins to the repair lesion | |
| K120ub | RNF20–RNF40 | H2B | Recruits XRCC4 and Ku for NHEJ and BRCA1 and RAD51 FOR HR | |
| K91ub | BBAP | H4 | Induces H4K20me modification and recruits 53BP1 to promote NHEJ |