首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Genetic activities in micronuclei: is the DNA entrapped in micronuclei lost for the cell?
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Genetic activities in micronuclei: is the DNA entrapped in micronuclei lost for the cell?

机译:微核中的遗传活性:包裹在微核中的DNA是否会丢失?

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Micronuclei are good markers of genotoxic exposure in humans and their scoring has been extensively used to identify potential genotoxic agents. Micronuclei are also indicators of chromosomal instability, since the frequency of micronuclei is higher in tumour cells and cells with a defective DNA damage repair system or disrupted cell cycle checkpoint machinery. Despite the widespread use of this biomarker, information on the basic biology of micronuclei and the impact of micronuclei on the cell is relatively controversial. In some cell systems, micronuclei are considered to be genetic material that is lost for the cell; whereas other studies suggest that micronuclear DNA is actively transcribed and its genes are fully expressed. Recently, evidence has accumulated suggesting that damaged DNA entrapped in micronuclei induces a defective cell cycle checkpoint arrest and DNA repair response, and that micronuclear content can be degraded without inducing an immediate cell cycle arrest or causing the cell to enter apoptosis. Overall, these findings emphasise the important consequences of micronucleus formation in terms of chromosomal instability in general and gene loss in particular.
机译:微核是人类遗传毒性暴露的良好标志物,其得分已广泛用于鉴定潜在的遗传毒性物质。微核也是染色体不稳定性的指标,因为肿瘤细胞和DNA损伤修复系统缺陷或细胞周期检查点机制受损的细胞中微核的频率较高。尽管该生物标记物得到了广泛使用,但有关微核基本生物学以及微核对细胞的影响的信息仍存在争议。在某些细胞系统中,微核被认为是细胞丢失的遗传物质。而其他研究表明,微核DNA被积极转录,其基因被充分表达。近来,已有证据表明,包裹在微核中的受损DNA诱导了缺陷的细胞周期检查点停滞和DNA修复反应,并且微核含量可以被降解而不会引起立即的细胞周期停滞或引起细胞进入凋亡状态。总体而言,这些发现强调了从总体上染色体不稳定,尤其是基因丢失的角度来看,微核形成的重要后果。

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