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Analogs of the novel phytohormone strigolactone trigger apoptosis and synergize with PARP inhibitors by inducing DNA damage and inhibiting DNA repair

机译:新型植物激素strigolactone的类似物通过诱导DNA损伤和抑制DNA修复来触发细胞凋亡并与PARP抑制剂协同作用

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摘要

Strigolactones are a novel class of plant hormones produced in roots that regulate shoot and root development. We previously reported that strigolactone analogs (SLs) induce G2/M cell cycle arrest and apoptosis in a variety of human cancer cells and inhibit tumor growth of human breast cancer xenografts in mice. SLs had no significant influences on non-transformed cells. Here we report for the first time that SLs induce DNA damage in the form of DNA double-strand breaks (DSBs) and activate the DNA damage response signaling by inducing phosphorylation of ATM, ATR and DNA-PKcs and co-localization of the DNA damage signaling protein, 53BP1, with γH2AX nuclear foci. We further report that in addition to DSBs induction, SLs simultaneously impair DSBs repair, mostly homology-directed repair (HDR) and to a lesser extent non-homologous end joining (NHEJ). In response to SLs, RAD51, the homologous DSB repair protein, is ubiquitinated and targeted for proteasomal degradation and it fails to co-localize with γH2AX foci. Interestingly, SLs synergize with DNA damaging agents-based therapeutics. The combination of PARP inhibitors and SLs showed an especially potent synergy, but only in BRCA1-proficient cells. No synergy was observed between SLs and PARP inhibitors in BRCA1-deficient cells, supporting a role for SLs in HDR impairment. Together, our data suggest that SLs increase genome instability and cell death by a unique mechanism of inducing DNA damage and inhibiting DNA repair.
机译:松果内酯是一类在根中产生的新型植物激素,可调节芽和根的发育。我们以前曾报道过strigolactone类似物(SLs)诱导多种人类癌细胞中的G2 / M细胞周期停滞和凋亡,并抑制小鼠中人类乳腺癌异种移植的肿瘤生长。 SL对未转化的细胞没有显着影响。在这里,我们首次报道SL诱导DNA双链断裂(DSBs)形式的DNA损伤,并通过诱导ATM,ATR和DNA-PKcs的磷酸化以及DNA损伤的共定位来激活DNA损伤应答信号。信号蛋白53BP1,具有γH2AX核病灶。我们进一步报告说,除了DSBs诱导外,SL还同时损害DSBs的修复,主要是同源性定向修复(HDR),在较小程度上还包括非同源末端连接(NHEJ)。响应SLs,RAD51(同源DSB修复蛋白)被泛素化并靶向用于蛋白酶体降解,并且无法与γH2AX焦点共定位。有趣的是,SL与基于DNA破坏剂的治疗剂协同作用。 PARP抑制剂和SL的组合显示出特别有效的协同作用,但仅在BRCA1熟练的细胞中有效。在BRCA1缺陷型细胞中,SL和PARP抑制剂之间未观察到协同作用,支持SL在HDR损伤中的作用。在一起,我们的数据表明SLs通过诱导DNA损伤和抑制DNA修复的独特机制增加基因组的不稳定性和细胞死亡。

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