首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Silencing of FTS increases radiosensitivity by blocking radiation-induced Notch1 activation and spheroid formation in cervical cancer cells
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Silencing of FTS increases radiosensitivity by blocking radiation-induced Notch1 activation and spheroid formation in cervical cancer cells

机译:FTS的沉默通过阻断辐射诱导的Notch1活化和宫颈癌细胞中的球形形成来增加放射敏感性

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摘要

Increasing evidence(s) suggests that cancer stem cells (CSC) in tumours contribute to radio-resistance and recurrence. Notch plays an important role in the maintenance of CSC in many cancers including cervical cancer. Previously, we have reported the role of Fused Toes Homolog (FTS) in conferring radioresistance in cervical cancer cells in vitro and human subjects. The present study investigated the regulatory role of FTS in Notch signaling and maintenance of CSC upon irradiation of cervical cancer cells. The expression of Notch1, 2, 3, cleaved Notchl and its downstream target Hes1, and spheroid formation was increased by irradiation. Silencing of FTS prevented the radiation-induced increase in the expression of Notch signaling molecules and spheroid formation. Immunoprecipitation showed FTS binds Notchl and Hes1. Also in silico structural analysis identified putative residues responsible for the binding between FTS and Notchl. Spheroid formation and the expression of CSC markers, Nanog, Oct4A and Sox2 were greatly reduced by combining silencing of FTS and radiation. Taken together, these results suggest that FTS is involved in the regulation of irradiation-induced Notch signaling and CSC activation and can be used as a target to increase radiosensitivity in cervical cancer. (C) 2018 Elsevier B.V. All rights reserved.
机译:增加的证据表明肿瘤中的癌症干细胞(CSC)有助于无线电抗性和复发。陷波在许多癌症中维持CSC中发挥着重要作用。以前,我们已经报告了融合脚趾同源物(FTS)在体外和人受试者中赋予宫颈癌细胞的辐射敏感作用。本研究调查了FTS在宫颈癌细胞照射时在CSC中的陷波信号传导和维持的调节作用。通过辐射增加了Notch1,2,3,切割的Notch1和下游靶标HES1的表达和下游靶标HES1和球状形成。 FTS的沉默防止了辐射诱导的缺陷信号传导分子和球状形成表达的增加。免疫沉淀显示FTS结合Notchl和Hes1。在硅结构分析中,鉴定了负责FTS和Notch1之间的结合的推定残留物。通过组合FTS和辐射的沉默,大大降低了球状体形成和CSC标记,纳米,Oct4a和Sox2的表达。总之,这些结果表明FTS参与了辐照诱导的Notch信号传导和CSC活化的调节,可用作增加宫颈癌放射敏感性的靶标。 (c)2018年elestvier b.v.保留所有权利。

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