首页> 外文期刊>Biochemical and Biophysical Research Communications >Suppression of telomere-binding protein TPP1 resulted in telomere dysfunction and enhanced radiation sensitivity in telomerase-negative osteosarcoma cell line.
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Suppression of telomere-binding protein TPP1 resulted in telomere dysfunction and enhanced radiation sensitivity in telomerase-negative osteosarcoma cell line.

机译:端粒结合蛋白TPP1的抑制导致端粒酶功能异常,并在端粒酶阴性骨肉瘤细胞系中增强了放射敏感性。

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摘要

Mammalian telomeres are protected by the shelterin complex that contains the six core proteins POT1, TPP1, TIN2, TRF1, TRF2 and RAP1. TPP1, formerly known as TINT1, PTOP, and PIP1, is a key factor that regulates telomerase recruitment and activity. In addition to this, TPP1 is required to mediate the shelterin assembly and stabilize telomere. Previous work has found that TPP1 expression was elevated in radioresistant cells and that overexpression of TPP1 led to radioresistance and telomere lengthening in telomerase-positive cells. However, the exact effects and mechanism of TPP1 on radiosensitivity are yet to be precisely defined in the ALT cells. Here we report on the phenotypes of the conditional deletion of TPP1 from the human osteosarcoma U2OS cells using ALT pathway to extend the telomeres.TPP1 deletion resulted in telomere shortening, increased apoptosis and radiation sensitivity enhancement. Together, our findings show that TPP1 plays a vital role in telomere maintenance and protection and establish an intimate relationship between TPP1, telomere and cellular response to ionizing radiation, but likely has the specific mechanism yet to be defined.
机译:哺乳动物的端粒受避雷肽复合物保护,该复合物包含六个核心蛋白POT1,TPP1,TIN2,TRF1,TRF2和RAP1。 TPP1,以前称为TINT1,PTOP和PIP1,是调节端粒酶募集和活性的关键因素。除此之外,还需要TPP1介导伞菌蛋白组装和稳定端粒。先前的工作已经发现,TPP1的表达在抗辐射细胞中升高,TPP1的过表达导致端粒酶阳性细胞中的放射抗性和端粒延长。但是,TPP1对放射敏感性的确切作用和机制尚未在ALT细胞中精确定义。在此我们报道了使用ALT途径扩展端粒从人骨肉瘤U2OS细胞中TPP1的条件缺失的表型.TPP1缺失导致端粒缩短,凋亡增加和放射敏感性增强。总之,我们的发现表明TPP1在端粒的维持和保护中起着至关重要的作用,并在TPP1,端粒和细胞对电离辐射的反应之间建立了密切的关系,但具体的机制可能尚待确定。

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