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Tip60-mediated acetylation activates transcription independent apoptotic activity of Abl
Zhihua Jiang1, Ravindra Kamath, Shunquian Jin
1Department of Microbiology and Molecular Genetics, Pittsburgh, PA 15240, USA.
Background:
The proto-oncogene, c-Abl encodes a ubiquitously expressed tyrosine kinase that critically governs the cell death response induced by genotoxic agents such as ionizing radiation and cisplatin. The catalytic function of Abl, which is essential for executing DNA damage response (DDR), is normally tightly regulated but upregulated several folds upon IR exposure due to ATM-mediated phosphorylation on S465. However, the mechanism/s leading to activation of Abl's apoptotic activity is currently unknown.
Results:
We investigated the role of acetyl modification in regulating apoptotic activity of Abl and the results showed that DNA strand break-inducing agents, ionizing radiation and bleomycin induced Abl acetylation. Using mass spectrophotometry and site-specific acetyl antibody, we identified Abl K921, located in the DNA binding domain, and conforming to one of the lysine residue in the consensus acetylation motif (KXXK--X3-5--SGS) is acetylated following DNA damage. We further observed that the S465 phosphorylated Abl is acetyl modified during DNA damage. Signifying the modification, cells expressing the non acetylatable K921R mutant displayed attenuated apoptosis compared to wild-type in response to IR or bleomycin treatment. WT-Abl induced apoptosis irrespective of new protein synthesis. Furthermore, upon γ-irradiation K921R-Abl displayed reduced chromatin binding compared to wild type. Finally, loss of Abl K921 acetylation in Tip60-knocked down cells and co-precipitation of Abl with Tip60 in DNA damaged cells identified Tip60 as an Abl acetylase.
Conclusion:
Collective data showed that DNA damage-induced K921 Abl acetylation, mediated by Tip60, stimulates transcriptional-independent apoptotic activity and chromatin-associative property thereby defining a new regulatory mechanism governing Abl's DDR function.
Insights
DNA damage triggers Abl acetylation at K921 by Tip60, enhancing apoptotic activity and chromatin binding. This acetylation is crucial for the DNA damage response (DDR) pathway.
Area of Science:
- Molecular Biology
- Cellular Biology
- Biochemistry
Background:
- The proto-oncogene c-Abl tyrosine kinase regulates cell death in response to genotoxic agents.
- Abl's catalytic function is vital for DNA damage response (DDR), normally regulated but upregulated by ATM-mediated phosphorylation at S465 upon DNA damage.
- The precise mechanisms activating Abl's apoptotic function after DNA damage remain unclear.
Purpose of the Study:
- To investigate the role of acetyl modification in regulating Abl's apoptotic activity.
- To identify the specific site of Abl acetylation and the enzyme responsible for this modification.
- To elucidate the functional consequences of Abl acetylation in the DNA damage response.
Main Methods:
- Induction of DNA damage using ionizing radiation and bleomycin.
- Mass spectrophotometry and site-specific antibodies to identify Abl acetylation.
- Site-directed mutagenesis to create non-acetylatable Abl mutants (K921R).
- Analysis of apoptosis, chromatin binding, and protein interactions in response to DNA damage.
Main Results:
- Ionizing radiation and bleomycin induced Abl acetylation, specifically at lysine 921 (K921) within the DNA binding domain.
- Phosphorylated Abl at S465 also undergoes acetylation.
- Cells expressing the K921R mutant showed reduced apoptosis and impaired chromatin binding after DNA damage compared to wild-type Abl.
- Tip60 was identified as the acetyltransferase responsible for Abl K921 acetylation.
Conclusions:
- DNA damage induces Abl acetylation at K921, mediated by Tip60.
- This acetylation enhances Abl's transcriptional-independent apoptotic activity and chromatin association.
- Abl K921 acetylation represents a novel regulatory mechanism in the DNA damage response (DDR) pathway.
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