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TRAIL 和 Smac 的共过表达通过线粒体途径依赖于细胞凋亡使 MDA-MB-231 细胞对辐射敏感。

Co-overexpression of TRAIL and Smac sensitizes MDA-MB-231 cells to radiation through apoptosis depending on mitochondrial pathway.

机构信息

NHC Key Laboratory of Radiobiology (Jilin University), School of Public Health, Jilin University, Changchun, 130021, People's Republic of China.

出版信息

Radiat Environ Biophys. 2022 Mar;61(1):37-48. doi: 10.1007/s00411-021-00961-3. Epub 2022 Jan 10.

DOI:10.1007/s00411-021-00961-3
PMID:35006369
Abstract

Pro-apoptosis in cancer cells has been proposed as a beneficial therapeutic strategy for potentiating the anticancer effects of radiotherapy. TNF-related apoptosis inducing ligand (TRAIL) and Second mitochondria derived activator of caspase (Smac) can induce cell apoptosis. Herein, we designed a conditionally replicating adenoviral co-overexpression vector of TRAIL and Smac regulated by the Egr1 promoter, in which hTERT, E1A-E1B and E1B55K genes were inserted to achieve enhanced tumor targeting characteristics. After breast cancer MDA-MB-231 cells were infected and irradiated, cellular proliferation and colony formation were measured, apoptotic rate was detected by FCM after AnnexinV-FITC/PI staining. To explore the molecular mechanisms of apoptosis, mRNA and protein levels of TRAIL, Smac, Cytochrome c (Cyt c), death receptor 5 (DR5), caspase-8, -9 and -3 were measured by quantitative real-time PCR, ELISA and Western blot, and caspase-3 activity was detected using caspase-3 activity kits. The results showed that TRAIL and/or Smac overexpression enhanced proliferation inhibition and radio-sensitivity through apoptosis. In addition, the combination of IR and overexpression of TRAIL and/or Smac can activate more apoptosis in tumor cells, and the transcriptional levels and protein expressions of Cyt c, DR5, caspase-8, -9 and -3 had similar regularity with apoptotic changes, indicating the molecular mechanisms of TRAIL and Smac involves the mitochondrial pathway. Our findings may have implications for novel radiotherapy plans for breast tumor treatment.

摘要

促凋亡作用已被提议作为增强放射治疗抗癌作用的有益治疗策略应用于癌细胞中。TNF 相关凋亡诱导配体(TRAIL)和第二线粒体衍生的半胱天冬酶激活剂(Smac)可诱导细胞凋亡。在此,我们设计了一种受 Egr1 启动子调控的 TRAIL 和 Smac 共表达的条件复制型腺病毒载体,其中插入了 hTERT、E1A-E1B 和 E1B55K 基因,以实现增强的肿瘤靶向特性。在乳腺癌 MDA-MB-231 细胞感染和照射后,测量细胞增殖和集落形成,通过 AnnexinV-FITC/PI 染色后用 FCM 检测凋亡率。为了探索凋亡的分子机制,通过定量实时 PCR、ELISA 和 Western blot 测量 TRAIL、Smac、细胞色素 c(Cyt c)、死亡受体 5(DR5)、caspase-8、-9 和 -3 的 mRNA 和蛋白水平,并使用 caspase-3 活性试剂盒检测 caspase-3 活性。结果表明,通过凋亡,TRAIL 和/或 Smac 的过表达增强了增殖抑制和放射敏感性。此外,IR 与 TRAIL 和/或 Smac 的过表达联合可在肿瘤细胞中激活更多的凋亡,Cyt c、DR5、caspase-8、-9 和 -3 的转录水平和蛋白表达与凋亡变化具有相似的规律,表明 TRAIL 和 Smac 的分子机制涉及线粒体途径。我们的研究结果可能对乳腺癌治疗的新型放疗计划具有重要意义。

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