College of Medicine, QU Health, Qatar University, 2713, Doha, Qatar.
Oranta CancerDiagnostics AB, 75263, Uppsala, Sweden.
Mol Biol Rep. 2022 Jan;49(1):587-594. doi: 10.1007/s11033-021-06797-w. Epub 2021 Nov 3.
DNA-dependent protein kinase catalytic subunit (DNA-PKcs) has emerged as a regulator of carcinogenesis. Increased expression of DNA-PKcs correlates with metastatic cancers. Here we review recently reported crosstalk of DNA-PKcs with estrogen (ER), progesterone (PR) and epidermal growth factor (EGFR) receptors. The reports show an extensive network of functional and direct interactions. Targeted studies focused on specific molecular mechanisms, and a systems biology network analysis shows unbiasedly engagement of various cellular functions. Feedforward regulation between expression and activities of DNA-PKcs and ER, DNA-PKcs-dependent phosphorylation of PR and an impact on PR-dependent transcription, and DNA-PKcs-promoted EGFR-dependent aggressiveness and metastases are examples of the results of targeted studies. Systems biology approach extracted many more genes and proteins engaged by DNA-PKcs in interaction with ER, PR, and EGFR. Examples are such regulators and predictors of breast tumorigenesis as BRCA1, TP53, and 18 genes of the MammaPrint signature. Reviewed here data suggest that the diagnostic value of DNA-PKcs in the context of ER, PR and EGFR signaling is defined by a network signature rather than by single markers. This review summarizes mechanisms of DNA-PKcs interaction with ER, PR, and EGFR, highlights tumor suppressors and oncogenes engaged by DNA-PKcs, and emphasizes the importance of diagnostic network-based signatures.
DNA 依赖性蛋白激酶催化亚基(DNA-PKcs)已成为致癌作用的调节剂。DNA-PKcs 的表达增加与转移性癌症相关。在这里,我们综述了最近报道的 DNA-PKcs 与雌激素(ER)、孕激素(PR)和表皮生长因子(EGFR)受体的交叉对话。这些报告显示了广泛的功能和直接相互作用网络。靶向研究集中在特定的分子机制上,而系统生物学网络分析则公正地涉及各种细胞功能。DNA-PKcs 表达和活性与 ER、DNA-PKcs 依赖性 PR 磷酸化和对 PR 依赖性转录的影响之间的前馈调节,以及 DNA-PKcs 促进的 EGFR 依赖性侵袭和转移,都是靶向研究结果的例子。系统生物学方法提取了更多的基因和蛋白质,这些基因和蛋白质与 ER、PR 和 EGFR 相互作用时被 DNA-PKcs 募集。BRCA1、TP53 和 MammaPrint 特征的 18 个基因等乳腺癌发生的调节剂和预测因子就是这样的例子。这里综述的数据表明,DNA-PKcs 在 ER、PR 和 EGFR 信号背景下的诊断价值是由网络特征而不是单个标志物定义的。本综述总结了 DNA-PKcs 与 ER、PR 和 EGFR 相互作用的机制,强调了 DNA-PKcs 募集的肿瘤抑制因子和癌基因,并强调了基于诊断网络的特征的重要性。