DNA‑PKcs phosphorylation specific inhibitor, NU7441, enhances the radiosensitivity of clinically relevant radioresistant oral squamous cell carcinoma cells.

IF 2.3 Q3 MEDICINE, RESEARCH & EXPERIMENTAL Biomedical reports Pub Date : 2023-04-01 DOI:10.3892/br.2023.1610
Kentaro Ohuchi, Ryo Saga, Kazuki Hasegawa, Eichi Tsuruga, Yoichiro Hosokawa, Manabu Fukumoto, Kazuhiko Okumura
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引用次数: 1

Abstract

Radioresistant cancer cells lead to poor prognosis after radiotherapy. However, the mechanisms underlying cancer cell radioresistance have not been fully elucidated. Thus, the DNA damage response of clinically relevant radioresistant oral squamous cell carcinoma HSC2-R cells, established by long-term exposure of parental HSC2 cells to fractionated radiation, was investigated. The DNA double-strand break (DSB) repair protein-specific inhibitor, NU7441, which targets DNA-dependent protein kinase catalytic subunit (DNA-PKcs) phosphorylation, and IBR2, which targets Rad51, were administered to HSC2 and HSC2-R cells. NU7441 administration eliminated colony formation in both cell lines under 6 Gy X-ray irradiation, whereas IBR2 did not affect colony formation. NU7441 and IBR2 significantly enhanced 6 Gy X-ray irradiation-induced apoptosis in HSC2-R cells. In HSC2-R cells, cell cycle arrest released earlier than in HSC2 cells, and phosphorylated-H2A histone family member X (γH2AX) expression rapidly decreased. Following NU7441 administration, γH2AX expression and the cell percentages of the G2/M phase were not decreased at 48 h after treatment in HSC2-R cells. DNA-PKcs has been demonstrated to regulate non-homologous end-joining (NHEJ) and homologous recombination (HR) repair, and the later phase of DSB repair is dominated by HR. Therefore, the results of the present study indicated that the DSB repair mechanism in HSC2-R cells strongly depends on NHEJ and loss of HR repair function. The present study revealed a potential mechanism underlying the acquired radioresistance and therapeutic targets in radioresistant cancer cells.

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DNA - PKcs磷酸化特异性抑制剂NU7441增强临床相关放射耐药口腔鳞状细胞癌细胞的放射敏感性。
放射耐药癌细胞导致放疗后预后不良。然而,癌细胞放射耐药的机制尚未完全阐明。因此,我们研究了临床相关放射耐药口腔鳞状细胞癌HSC2- r细胞的DNA损伤反应,该细胞是通过亲代HSC2细胞长期暴露于分次辐射而建立的。将DNA双链断裂(DSB)修复蛋白特异性抑制剂NU7441(靶向DNA依赖性蛋白激酶催化亚基(DNA- pkcs)磷酸化)和IBR2(靶向Rad51)分别给予HSC2和HSC2- r细胞。在6 Gy x射线照射下,NU7441消除了两种细胞系的菌落形成,而IBR2不影响菌落形成。NU7441和IBR2显著增强6 Gy x射线照射诱导的HSC2-R细胞凋亡。在HSC2- r细胞中,细胞周期阻滞释放比HSC2细胞早,磷酸化h2a组蛋白家族成员X (γH2AX)表达迅速下降。NU7441给药后48 h, HSC2-R细胞中γ - h2ax的表达和G2/M期细胞百分比均未降低。DNA-PKcs已被证明可调节非同源末端连接(NHEJ)和同源重组(HR)修复,并且DSB修复的后期以HR为主。因此,本研究结果表明,HSC2-R细胞的DSB修复机制强烈依赖于NHEJ和HR修复功能的丧失。本研究揭示了放射耐药癌细胞获得性放射耐药的潜在机制和治疗靶点。
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来源期刊
Biomedical reports
Biomedical reports MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
4.10
自引率
0.00%
发文量
86
期刊介绍: Biomedical Reports is a monthly, peer-reviewed journal, dedicated to publishing research across all fields of biology and medicine, including pharmacology, pathology, gene therapy, genetics, microbiology, neurosciences, infectious diseases, molecular cardiology and molecular surgery. The journal provides a home for original research, case reports and review articles.
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