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Determination of the number of RAD51 molecules in different human cell lines

机译:不同人细胞系中Rad51分子数的测定

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Knowledge about precise numbers of specific molecules is necessary for understanding and verification of biological pathways. The RAD51 protein is central in the repair of DNA double-strand breaks (DSBs) by homologous recombination repair and understanding its role in cellular pathways is crucial to design mechanistic DNA repair models. Here, we determined the number of RAD51 molecules in several human cell lines including primary fibroblasts. We showed that between 20000 to 100000 of RAD51 molecules are available per human cell that theoretically can be used for simultaneously loading at least 7 DSBs. Interestingly, the amount of RAD51 molecules does not significantly change after the induction of DNA damage using bleomycin or gamma-irradiation in cells but an accumulation of RAD51 on the chromatin occurs. Furthermore, we generated an EGFP-RAD51 fusion under the control of HSV thymidine kinase promoter sequences yielding moderate protein expression levels comparable to endogenously expressed RAD51. Initial characterizations suggest that these low levels of ectopically expressed RAD51 are compatible with cell cycle progression of human cells. Hence, we provide parameters for the quantitative understanding and modeling of RAD51-involving processes.
机译:关于理解和验证生物途径是必要的关于精确数量的知识。通过同源重组修复,RAD51蛋白是在DNA双链断裂(DSB)的修复中的中心,并且了解其在细胞途径中的作用对于设计机械DNA修复模型至关重要。这里,我们确定了几种人细胞系中的Rad51分子的数量,包括原发性成纤维细胞。我们表明,每人细胞可获得20000至100000的Rad51分子,理论上可用于同时加载至少7个DSB。有趣的是,在使用玻璃霉素或γ-辐照中诱导细胞的DNA损伤后,RAD51分子的量不会显着改变,但发生染色质的RAD51的积累。此外,我们在HSV胸苷激酶启动子序列的控制下产生了EGFP-RAD51融合,得到与内源表达的RAD51相当的中度蛋白质表达水平。初始表征表明,这些低水平的异位表达的Rad51与人细胞的细胞周期进展相容。因此,我们为Rad51涉及过程的定量理解和建模提供参数。

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