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拓扑异构酶 II 抑制剂依托泊苷诱导的水稻 DNA 甲基化变化和转座元件(mPing)的跨代转座。

Changes in DNA methylation and transgenerational mobilization of a transposable element (mPing) by the topoisomerase II inhibitor, etoposide, in rice.

机构信息

Key Laboratory of Molecular Epigenetics of MOE, and Institute of Genetics & Cytology, Northeast Normal University, Changchun 130024, China.

出版信息

BMC Plant Biol. 2012 Apr 9;12:48. doi: 10.1186/1471-2229-12-48.

Abstract

BACKGROUND

Etoposide (epipodophyllotoxin) is a chemical commonly used as an anti-cancer drug which inhibits DNA synthesis by blocking topoisomerase II activity. Previous studies in animal cells have demonstrated that etoposide constitutes a genotoxic stress which may induce genomic instability including mobilization of normally quiescent transposable elements (TEs). However, it remained unknown whether similar genetically mutagenic effects could be imposed by etoposide in plant cells. Also, no information is available with regard to whether the drug may cause a perturbation of epigenetic stability in any organism.

RESULTS

To investigate whether etoposide could generate genetic and/or epigenetic instability in plant cells, we applied etoposide to germinating seeds of six cultivated rice (Oryza sativa L.) genotypes including both subspecies, japonica and indica. Based on the methylation-sensitive gel-blotting results, epigenetic changes in DNA methylation of three TEs (Tos17, Osr23 and Osr36) and two protein-encoding genes (Homeobox and CDPK-related genes) were detected in the etoposide-treated plants (S0 generation) in four of the six studied japonica cultivars, Nipponbare, RZ1, RZ2, and RZ35, but not in the rest japonica cultivar (Matsumae) and the indica cultivar (93-11). DNA methylation changes in the etoposide-treated S0 rice plants were validated by bisulfite sequencing at both of two analyzed loci (Tos17 and Osr36). Transpositional activity was tested for eight TEs endogenous to the rice genome in both the S0 plants and their selfed progenies (S1 and S2) of one of the cultivars, RZ1, which manifested heritable phenotypic variations. Results indicated that no transposition occurred in the etoposide-treated S0 plants for any of the TEs. Nonetheless, a MITE transposon, mPing, showed rampant mobilization in the S1 and S2 progenies descended from the drug-treated S0 plants.

CONCLUSIONS

Our results demonstrate that etoposide imposes a similar genotoxic stress on plant cells as it does on animal and human cells, which may induce transgenerational genomic instability by instigating transpositional activation of otherwise dormant TEs. In addition, we show for the first time that etoposide may induce epigenetic instability in the form of altered DNA methylation patterns in eukaryotes. However, penetrance of the genotoxic effects of etoposide on plant cells, as being reflected as genetic and epigenetic instability, appears to be in a strictly genotype- and/or generation-dependent manner.

摘要

背景

依托泊苷(表鬼臼毒素)是一种常用于抗癌药物的化学物质,通过抑制拓扑异构酶 II 活性来抑制 DNA 合成。先前在动物细胞中的研究表明,依托泊苷构成一种遗传毒性应激,可能导致包括通常静止的转座元件(TEs)的基因组不稳定性。然而,目前尚不清楚依托泊苷是否会对植物细胞造成类似的遗传诱变效应。此外,尚无关于该药物是否会在任何生物体中引起表观遗传稳定性扰动的信息。

结果

为了研究依托泊苷是否会在植物细胞中产生遗传和/或表观遗传不稳定性,我们将依托泊苷应用于六种栽培稻(Oryza sativa L.)萌发种子中,包括粳稻和籼稻两个亚种。基于甲基化敏感凝胶印迹结果,在六种研究的粳稻品种(Nipponbare、RZ1、RZ2、RZ35、Matsumae 和 93-11)中的四个品种中,依托泊苷处理的植物(S0 代)中检测到三个 TEs(Tos17、Osr23 和 Osr36)和两个蛋白质编码基因(Homeobox 和 CDPK 相关基因)的 DNA 甲基化变化,但在其余的粳稻品种(Matsumae)和籼稻品种(93-11)中未检测到。在其中一个品种 RZ1 的 S0 代水稻植物中,通过两种分析基因座(Tos17 和 Osr36)的亚硫酸氢盐测序验证了依托泊苷处理的 S0 代植物中的 DNA 甲基化变化。对来自水稻基因组的八个内源 TE 在 S0 代植物及其自交后代(S1 和 S2)中的转座活性进行了测试,结果表明,在依托泊苷处理的 S0 代植物中,没有任何 TE 发生转座。然而,一种 MITE 转座子 mPing 在来自药物处理 S0 代植物的 S1 和 S2 后代中表现出猖獗的激活。

结论

我们的结果表明,依托泊苷对植物细胞造成的遗传毒性应激与对动物和人类细胞造成的应激相似,这可能通过引发原本静止的 TEs 的转座激活来诱导跨代基因组不稳定性。此外,我们首次表明,依托泊苷可能以改变真核生物 DNA 甲基化模式的形式引起表观遗传不稳定性。然而,依托泊苷对植物细胞的遗传毒性效应的表现,如遗传和表观遗传不稳定性,似乎严格依赖于基因型和/或代际。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2a9/3480845/ac78e63fc37a/1471-2229-12-48-1.jpg

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