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Differential epithelium DNA damage response to ATM and DNA-PK pathway inhibition in human prostate tissue culture.

机译:在人类前列腺组织培养中对ATM和DNA-PK途径抑制的差异性上皮DNA损伤反应。

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The ability of cells to respond and repair DNA damage is fundamental for the maintenance of genomic integrity. Ex vivo culturing of surgery-derived human tissues has provided a significant advancement to assess DNA damage response (DDR) in the context of normal cytoarchitecture in a non-proliferating tissue. Here, we assess the dependency of prostate epithelium DDR on ATM and DNA-PKcs, the major kinases responsible for damage detection and repair by nonhomologous end-joining (NHEJ), respectively. DNA damage was caused by ionizing radiation (IR) and cytotoxic drugs, cultured tissues were treated with ATM and DNA-PK inhibitors, and DDR was assessed by phosphorylation of ATM and its targets H2AX and KAP1, a heterochromatin binding protein. Phosphorylation of H2AX and KAP1 was fast, transient and fully dependent on ATM, but these responses were moderate in luminal cells. In contrast, DNA-PKcs was phosphorylated in both luminal and basal cells, suggesting that DNA-PK-dependent repair was also activated in the luminal cells despite the diminished H2AX and KAP1 responses. These results indicate that prostate epithelial cell types have constitutively dissimilar responses to DNA damage. We correlate the altered damage response to the differential chromatin state of the cells. These findings are relevant in understanding how the epithelium senses and responds to DNA damage.
机译:细胞响应和修复DNA损伤的能力是维持基因组完整性的基础。手术来源的人体组织的离体培养在评估非增殖组织中正常细胞结构的情况下评估DNA损伤反应(DDR)方面已取得了重大进展。在这里,我们评估了前列腺上皮DDR对ATM和DNA-PKcs的依赖性,ATM和DNA-PKcs分别是通过非同源末端连接(NHEJ)负责损伤检测和修复的主要激酶。 DNA损伤是由电离辐射(IR)和细胞毒性药物引起的,用ATM和DNA-PK抑制剂处理了培养的组织,并通过ATM及其靶标H2AX和KAP1(异染色质结合蛋白)的磷酸化来评估DDR。 H2AX和KAP1的磷酸化是快速,瞬时的,并且完全依赖于ATM,但是这些反应在腔细胞中是中等的。相比之下,DNA-PKcs在腔和基底细胞中都被磷酸化,这表明尽管H2AX和KAP1反应减弱,在腔细胞中DNA-PK依赖性修复也被激活。这些结果表明,前列腺上皮细胞类型对DNA损伤具有本质上不同的反应。我们将改变的损伤反应与细胞的不同染色质状态相关联。这些发现与了解上皮如何感知和响应DNA损伤有关。

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