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Cloning of canine Ku80 and its localization and accumulation at DNA damage sites

机译:犬Ku80的克隆及其在DNA损伤位点的定位和积累

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Molecularly targeted therapies have high specificity and significant cancer‐killing effect. However, their antitumor effect might be greatly diminished by variation in even a single amino acid in the target site, as it occurs, for example, as a consequence of SNPs. Increasing evidence suggests that the DNA repair protein Ku80 is an attractive target molecule for the development of next‐generation radiosensitizers for human cancers. However, the localization, post‐translational modifications (PTMs), and complex formation of Ku80 have not been elucidated in canines. In this study, for the first time, we cloned, sequenced, and characterized canine Ku80 cDNA. Our data show that canine Ku80 localizes in the nuclei of interphase cells and is quickly recruited at laser‐induced double‐strand break sites. Comparative analysis shows that canine Ku80 had only 82.3% amino acid identity with the homologous human protein, while the nuclear localization signal (NLS) in human and canine Ku80 is evolutionarily conserved. Notably, some predicted PTM sites, including one acetylation site and one sumoylation site within the NLS, are conserved in the two species. These findings suggest that the spatial and temporal regulation of Ku80 might be conserved in humans and canines. However, our data indicate that the expression of Ku80 is considerably lower in the canine cell lines examined than in human cell lines. These important findings might be useful to better understand the mechanism of the Ku80‐dependent DNA repair and for the development of potential next‐generation radiosensitizers targeting common targets in human and canine cancers.
机译:分子靶向疗法具有高特异性和显着的杀癌作用。然而,由于例如SNP的结果,即使靶位中的单个氨基酸发生变化,它们的抗肿瘤作用也可能大大降低。越来越多的证据表明,DNA修复蛋白Ku80是开发用于人类癌症的下一代放射增敏剂的有吸引力的靶分子。但是,犬类中尚未阐明Ku80的定位,翻译后修饰(PTM)和复杂形成。在这项研究中,我们首次克隆,测序和表征了犬Ku80 cDNA。我们的数据显示,犬Ku80位于相间细胞核中,并在激光诱导的双链断裂位点迅速募集。对比分析表明,犬Ku80与人类同源蛋白仅具有82.3%的氨基酸同一性,而人和犬Ku80中的核定位信号(NLS)在进化上是保守的。值得注意的是,在两个物种中,某些预测的PTM位点(包括NLS中的一个乙酰化位点和一个磺酰化位点)是保守的。这些发现表明,Ku80的时空调控在人类和犬类中可能是保守的。然而,我们的数据表明,在所检查的犬细胞系中,Ku80的表达明显低于人细胞系。这些重要发现可能有助于更好地了解依赖于Ku80的DNA修复的机制,并有助于开发针对人类和犬癌共同靶标的潜在下一代放射增敏剂。

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