Department of Biochemistry, Schulich School of Medicine and Dentistry, Western University, London, ON N6A 3K7, Canada.
Robarts Research Institute, Schulich School of Medicine and Dentistry, Western University, London, ON N6A 5B7, Canada.
Int J Mol Sci. 2023 Apr 11;24(8):7041. doi: 10.3390/ijms24087041.
The Ku heterodimer, composed of subunits Ku70 and Ku80, is known for its essential role in repairing double-stranded DNA breaks via non-homologous end joining (NHEJ). We previously identified Ku70 S155 as a novel phosphorylation site within the von Willebrand A-like (vWA) domain of Ku70 and documented an altered DNA damage response in cells expressing a Ku70 S155D phosphomimetic mutant. Here, we conducted proximity-dependent biotin identification (BioID2) screening using wild-type Ku70, Ku70 S155D mutant, and Ku70 with a phosphoablative substitution (S155A) to identify Ku70 S155D-specific candidate proteins that may rely on this phosphorylation event. Using the BioID2 screen with multiple filtering approaches, we compared the protein interactor candidate lists for Ku70 S155D and S155A. TRIP12 was exclusive to the Ku70 S155D list, considered a high confidence interactor based on SAINTexpress analysis, and appeared in all three biological replicates of the Ku70 S155D-BioID2 mass spectrometry results. Using proximity ligation assays (PLA), we demonstrated a significantly increased association between Ku70 S155D-HA and TRIP12 compared to wild-type Ku70-HA cells. In addition, we were able to demonstrate a robust PLA signal between endogenous Ku70 and TRIP12 in the presence of double-stranded DNA breaks. Finally, co-immunoprecipitation analyses showed an enhanced interaction between TRIP12 and Ku70 upon treatment with ionizing radiation, suggesting a direct or indirect association in response to DNA damage. Altogether, these results suggest an association between Ku70 phospho-S155 and TRIP12.
Ku 异源二聚体由 Ku70 和 Ku80 亚基组成,其在通过非同源末端连接 (NHEJ) 修复双链 DNA 断裂方面起着至关重要的作用。我们之前在 Ku70 的 von Willebrand A 样 (vWA) 结构域中鉴定出 Ku70 S155 是一个新的磷酸化位点,并记录了表达 Ku70 S155D 磷酸模拟突变体的细胞中 DNA 损伤反应的改变。在这里,我们使用野生型 Ku70、Ku70 S155D 突变体和具有磷酸化失活取代 (S155A) 的 Ku70 进行了邻近依赖性生物素鉴定 (BioID2) 筛选,以鉴定可能依赖于该磷酸化事件的 Ku70 S155D 特异性候选蛋白。使用具有多种过滤方法的 BioID2 筛选,我们比较了 Ku70 S155D 和 S155A 的蛋白质相互作用候选列表。TRIP12 仅存在于 Ku70 S155D 列表中,根据 SAINTexpress 分析被认为是高可信度的相互作用体,并且出现在 Ku70 S155D-BioID2 质谱结果的所有三个生物学重复中。通过邻近连接分析 (PLA),我们证明 Ku70 S155D-HA 与 TRIP12 之间的关联明显高于野生型 Ku70-HA 细胞。此外,我们能够在双链 DNA 断裂存在的情况下,在内源性 Ku70 和 TRIP12 之间证明稳健的 PLA 信号。最后,共免疫沉淀分析表明,在电离辐射处理后,TRIP12 和 Ku70 之间的相互作用增强,表明在响应 DNA 损伤时存在直接或间接关联。总而言之,这些结果表明 Ku70 磷酸化 S155 与 TRIP12 之间存在关联。