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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Chromatin structure influences the sensitivity of DNA to gamma-radiation.
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Chromatin structure influences the sensitivity of DNA to gamma-radiation.

机译:染色质结构影响DNA对伽马辐射的敏感性。

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摘要

For the first time, DNA double-strand breaks (DSBs) were directly visualized in functionally and structurally different chromatin domains of human cells. The results show that genetically inactive condensed chromatin is much less susceptible to DSB induction by gamma-rays than expressed, decondensed domains. Higher sensitivity of open chromatin for DNA damage was accompanied by more efficient DSB repair. These findings follow from comparing DSB induction and repair in two 11 Mbp-long chromatin regions, one with clusters of highly expressed genes and the other, gene-poor, containing mainly genes having only low transcriptional activity. The same conclusions result from experiments with whole chromosome territories, differing in gene density and consequently in chromatin condensation. It follows from our further results that this lower sensitivity of DNA to the damage by ionizing radiation in heterochromatin is not caused by the simple chromatin condensation but very probably by the presence of a higher amount of proteins compared to genetically active and decondensed chromatin. In addition, our results show that some agents potentially used for cell killing in cancer therapy (TSA, hypotonic and hypertonic) influence cell survival of irradiated cells via changes in chromatin structure and efficiency of DSB repair in different ways.
机译:第一次,DNA双链断裂(DSB)在人类细胞的功能和结构上不同的染色质域中直接可见。结果表明,与表达,去缩合的结构域相比,具有遗传活性的缩合染色质更不容易受到伽马射线诱导的DSB诱导。开放染色质对DNA损伤的敏感性更高,同时DSB修复效率更高。这些发现是通过比较两个11 Mbp长的染色质区域中DSB的诱导和修复来进行的,其中一个具有高表达基因簇,而另一个则基因贫乏,主要包含仅具有低转录活性的基因。对整个染色体区域的实验得出相同的结论,其基因密度不同,因此染色质浓缩也不同。从我们的进一步结果可以看出,DNA对异染色质中电离辐射造成的损害的较低敏感性不是由简单的染色质浓缩引起的,而是很可能是由于与遗传活性和去浓缩的染色质相比存在大量蛋白质。此外,我们的结果表明,某些可能用于癌症治疗中的细胞杀灭的药物(TSA,低渗和高渗)会通过染色质结构的改变和DSB修复效率的不同方式影响照射细胞的细胞存活。

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