| Literature DB >> 25914721 |
Simona Iezzi1, Maurizio Fanciulli1.
Abstract
The transcriptional cofactor Che-1/AATF is currently emerging as an important component of the DNA damage response (DDR) machinery, the complex signaling network that maintains genome integrity and prevents tumorigenesis. Moreover this protein is involved in a wide range of cellular pathways, regulating proliferation and survival in both physiological and pathological conditions. Notably, some evidence indicates that dysregulation of Che-1/AATF levels are associated with the transformation process and elevated levels of Che-1/AATF are required for tumor cell survival. It is for these reasons that Che-1/AATF has been regarded as an attractive, still theoretical, therapeutic target for cancer treatments. In this review, we will provide an updated overview of Che-1/AATF activities, from transcriptional regulation to DDR.Entities:
Keywords: Che-1/AATF; DNA damage response; apoptosis; cell cycle regulation; cellular stress; survival; transcription
Year: 2015 PMID: 25914721 PMCID: PMC4392318 DOI: 10.3389/fgene.2015.00141
Source DB: PubMed Journal: Front Genet ISSN: 1664-8021 Impact factor: 4.599
Che-1/AATF post-translational modifications.
| Modification | Residue | Enzyme | Function | Reference |
|---|---|---|---|---|
| Phosphorylation | S181 | ATM | Stabilization upon DNA damage; modulation of protein–protein interactions | |
| S141 S474 S508 | Chk2 | Stabilization upon DNA damage; modulation of protein–protein interactions | ||
| T144 | HIPK2 | Degradation following apoptotic DNA damage | ||
| S316* S320* S321* | Modulated upon autophagy inhibition | |||
| T366* | MK2 | Nuclear translocation | ||
| Cdk5 | ||||
| Poly(ADP ribosyl)ation | PARP-1 | Stabilization upon DNA damage | ||
| Ubiquitination | HDM2 | Degradation following apoptotic DNA damage | ||
| Isomerization | P145 | Pin1 | Prerequisite for ubiquitination and degradation |