Barone Daniela, Iannuzzi Carmelina Antonella, Forte Iris Maria, Ragosta Maria Carmen, Cuomo Maria, Dell'Aquila Milena, Altieri Angela, Caporaso Antonella, Camerlingo Rosa, Rigano Maria Manuela, Monti Daria Maria, Barone Amalia, Imbimbo Paola, Frusciante Luigi, Monda Marcellino, D'Angelo Margherita, De Laurentiis Michelino, Giordano Antonio, Alfano Luigi
Cell Biology and Biotherapy Unit, Istituto Nazionale Tumori-Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS)-Fondazione G. Pascale, Napoli, Italy.
Department of Medicine, Surgery and Neuroscience, University of Siena and Istituto Toscana Tumori (ITT), Siena, Italy.
Front Oncol. 2023 Jun 20;13:1117262. doi: 10.3389/fonc.2023.1117262. eCollection 2023.
DNA double-strand breaks are the most toxic lesions repaired through the non-homologous and joining (NHEJ) or the homologous recombination (HR), which is dependent on the generation of single-strand tails, by the DNA end resection mechanism. The resolution of the HR intermediates leads to error-free repair (Gene Conversion) or the mutagenic pathways (Single Strand Annealing and Alternative End-Joining); the regulation of processes leading to the resolution of the HR intermediates is not fully understood.
Here, we used a hydrophilic extract of a new tomato genotype (named DHO) in order to modulate the Camptothecin (CPT) DNA damage response.
We demonstrated increased phosphorylation of Replication Protein A 32 Serine 4/8 (RPA32 S4/8) protein in HeLa cells treated with the CPT in combination with DHO extract with respect to CPT alone. Moreover, we pointed out a change in HR intermediates resolution from Gene Conversion to Single Strand Annealing through the modified DNA repair protein RAD52 homolog (RAD52), DNA excision repair protein ERCC-1 (ERCC1) chromatin loading in response to DHO extract, and CPT co-treatment, with respect to the vehicle. Finally, we showed an increased sensitivity of HeLa cell lines to DHO extract and CPT co-treatment suggesting a possible mechanism for increasing the efficiency of cancer therapy.
We described the potential role of DHO extract in the modulation of DNA repair, in response to Camptothecin treatment (CPT), favoring an increased sensitivity of HeLa cell lines to topoisomerase inhibitor therapy.
DNA双链断裂是通过非同源末端连接(NHEJ)或同源重组(HR)修复的最具毒性的损伤,同源重组依赖于DNA末端切除机制产生单链尾巴。HR中间体的解决导致无错误修复(基因转换)或诱变途径(单链退火和替代末端连接);导致HR中间体解决的过程的调控尚未完全了解。
在这里,我们使用了一种新的番茄基因型(命名为DHO)的亲水性提取物来调节喜树碱(CPT)的DNA损伤反应。
我们证明,与单独使用CPT相比,用CPT联合DHO提取物处理的HeLa细胞中,复制蛋白A 32丝氨酸4/8(RPA32 S4/8)蛋白的磷酸化增加。此外,我们指出,通过修饰的DNA修复蛋白RAD52同源物(RAD52)、DNA切除修复蛋白ERCC-1(ERCC1)染色质加载,响应DHO提取物和CPT联合处理,HR中间体的解决从基因转换变为单链退火,相对于载体。最后,我们表明HeLa细胞系对DHO提取物和CPT联合处理的敏感性增加,这表明了一种提高癌症治疗效率的可能机制。
我们描述了DHO提取物在调节DNA修复中的潜在作用,以响应喜树碱治疗(CPT),有利于提高HeLa细胞系对拓扑异构酶抑制剂治疗的敏感性。