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Author Spotlight: Combining Proximity Ligand Assay with Gamma-H2AX Staining to Characterize Protein Interactions in DNA Damage Response
Published on: August 2, 2024
DNA binding activity of Ku during chemotherapeutic agent-induced early apoptosis
Katsuya Iuchi1, Tatsuo Yagura1
1Department of Bioscience, Faculty of Science and Technology, Kwansei Gakuin University, 2-1 Gakuin, Sanda-shi, Hyogo-ken 669-1337, Japan.
Abstract:
Ku protein is a heterodimer composed of two subunits, and is capable of both sequence-independent and sequence-specific DNA binding. The former mode of DNA binding plays a crucial role in DNA repair. The biological role of Ku protein during apoptosis remains unclear. Here, we show characterization of Ku protein during apoptosis. In order to study the DNA binding properties of Ku, we used two methods for the electrophoresis mobility shift assay (EMSA). One method, RI-EMSA, which is commonly used, employed radiolabeled DNA probes. The other method, WB-EMSA, employed unlabeled DNA followed by western blot and detection with anti-Ku antiserum. In this study, Ku-DNA probe binding activity was found to dramatically decrease upon etoposide treatment, when examined by the RI-EMSA method. In addition, pre-treatment with apoptotic cell extracts inhibited Ku-DNA probe binding activity in the non-treated cell extract. The inhibitory effect of the apoptotic cell extract was reduced by DNase I treatment. WB-EMSA showed that the Ku in the apoptotic cell extract bound to fragmented endogenous DNA. Interestingly, Ku in the apoptotic cell extract purified by the Resource Q column bound 15-bp DNA in both RI-EMSA and WB-EMSA, whereas Ku in unpurified apoptotic cell extracts did not bind additional DNA. These results suggest that Ku binds cleaved chromosomal DNA and/or nucleosomes in apoptotic cells. In conclusion, Ku is intact and retains DNA binding activity in early apoptotic cells.
Insights
Ku protein remains intact and retains DNA binding activity during early apoptosis. It binds to fragmented chromosomal DNA and nucleosomes in apoptotic cells, a role distinct from its DNA repair function.
Area of Science:
- Cellular biology
- Molecular biology
- Biochemistry
Background:
- Ku protein, a heterodimer, performs sequence-independent and sequence-specific DNA binding.
- Its role in DNA repair is established, but its function during apoptosis is unclear.
Purpose of the Study:
- To characterize the behavior and DNA binding properties of Ku protein during apoptosis.
Main Methods:
- Electrophoresis mobility shift assay (EMSA), including radiolabeled (RI-EMSA) and unlabeled probe with western blot (WB-EMSA) methods.
- Analysis of Ku protein binding activity in cell extracts before and after apoptotic induction (etoposide treatment).
Main Results:
- Ku protein's DNA binding activity significantly decreased upon etoposide-induced apoptosis.
- Apoptotic cell extracts inhibited Ku-DNA probe binding, an effect reduced by DNase I treatment.
- WB-EMSA revealed Ku in apoptotic extracts binds fragmented endogenous DNA; purified Ku binds short DNA fragments.
Conclusions:
- Ku protein binds cleaved chromosomal DNA and/or nucleosomes in apoptotic cells.
- Ku protein remains intact and maintains DNA binding capacity in early apoptotic cells.
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