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RAD51 Is a Selective DNA Repair Target to Radiosensitize Glioma Stem Cells.

机译:RaD51是一种选择性DNa修复靶点,用于放射增敏胶质瘤干细胞。

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摘要

Patients with glioblastoma die from local relapse despite surgery and high-dose radiotherapy. Resistance to radiotherapy is thought to be due to efficient DNA double-strand break (DSB) repair in stem-like cells able to survive DNA damage and repopulate the tumor. We used clinical samples and patient-derived glioblastoma stem cells (GSCs) to confirm that the DSB repair protein RAD51 is highly expressed in GSCs, which are reliant on RAD51-dependent DSB repair after radiation. RAD51 expression and RAD51 foci numbers fall when these cells move toward astrocytic differentiation. In GSCs, the small-molecule RAD51 inhibitors RI-1 and B02 prevent RAD51 focus formation, reduce DNA DSB repair, and cause significant radiosensitization. We further demonstrate that treatment with these agents combined with radiation promotes loss of stem cells defined by SOX2 expression. This indicates that RAD51-dependent repair represents an effective and specific target in GSCs.
机译:尽管有手术和高剂量放疗,胶质母细胞瘤患者仍死于局部复发。人们认为,对放射疗法的抵抗力归因于干DNA样DNA中有效的DNA双链断裂(DSB)修复,这种干DNA能够幸免于DNA损伤并重新长出肿瘤。我们使用临床样本和患者来源的胶质母细胞瘤干细胞(GSC)来确认DSB修复蛋白RAD51在GSC中高表达,这依赖于辐射后依赖RAD51的DSB修复。当这些细胞向星形胶质细胞分化时,其RAD51的表达和RAD51的基因座数就会下降。在GSC中,小分子RAD51抑制剂RI-1和B02阻止RAD51焦点形成,减少DNA DSB修复并引起显着的放射增敏作用。我们进一步证明,用这些药物与放射线结合治疗可促进SOX2表达所定义的干细胞损失。这表明RAD51依赖性修复代表了GSC中的有效和特异性靶标。

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