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首页> 外文期刊>BMC Molecular Biology >The double-stranded break-forming activity of plant SPO11s and a novel rice SPO11 revealed by a Drosophila bioassay
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The double-stranded break-forming activity of plant SPO11s and a novel rice SPO11 revealed by a Drosophila bioassay

机译:果蝇生物测定揭示植物SPO11和新型水稻SPO11的双链断裂形成活性

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SPO11 is a key protein for promoting meiotic recombination, by generating chromatin locus- and timing-specific DNA double-strand breaks (DSBs). The DSB activity of SPO11 was shown by genetic analyses, but whether SPO11 exerts DSB-forming activity by itself is still an unanswered question. DSB formation by SPO11 has not been detected by biochemical means, probably because of a lack of proper protein-folding, posttranslational modifications, and/or specific SPO11-interacting proteins required for this activity. In addition, plants have multiple SPO11-homologues. To determine whether SPO11 can cleave DNA by itself, and to identify which plant SPO11 homologue cleaves DNA, we developed a Drosophila bioassay system that detects the DSB signals generated by a plant SPO11 homologue expressed ectopically. We cytologically and genetically demonstrated the DSB activities of Arabidopsis AtSPO11-1 and AtSPO11-2, which are required for meiosis, in the absence of other plant proteins. Using this bioassay, we further found that a novel SPO11-homologue, OsSPO11D, which has no counterpart in Arabidopsis, displays prominent DSB-forming activity. Quantitative analyses of the rice SPO11 transcripts revealed the specific increase in OsSPO11D mRNA in the anthers containing meiotic pollen mother cells. The Drosophila bioassay system successfully demonstrated that some plant SPO11 orthologues have intrinsic DSB activities. Furthermore, we identified a novel SPO11 homologue, OsSPO11D, with robust DSB activity and a possible meiotic function.
机译:SPO11是通过产生染色质基因座和时序特异性的DNA双链断裂(DSB)来促进减数分裂重组的关键蛋白。遗传分析显示了SPO11的DSB活性,但是SPO11本身是否发挥DSB形成活性仍是一个尚未回答的问题。尚未通过生化手段检测到SPO11形成的DSB,这可能是由于缺乏该活性所需的适当的蛋白折叠,翻译后修饰和/或与SPO11相互作用的特定蛋白质。此外,植物具有多个SPO11同源物。为了确定SPO11是否可以自身裂解DNA,并鉴定哪个植物SPO11同源物裂解DNA,我们开发了果蝇生物测定系统,该系统检测异位表达的植物SPO11同源物产生的DSB信号。我们在细胞学和遗传学上证明了在没有其他植物蛋白的情况下拟南芥AtSPO11-1和AtSPO11-2的DSB活性,这是减数分裂所需的。使用该生物测定法,我们进一步发现,在拟南芥中没有对应物的新型SPO11同源物OsSPO11D显示出显着的DSB形成活性。水稻SPO11转录本的定量分析显示,含有减数分裂花粉母细胞的花药中OsSPO11D mRNA的特异性增加。果蝇生物测定系统成功证明某些植物SPO11直系同源物具有固有的DSB活性。此外,我们确定了具有强大的DSB活性和可能的​​减数分裂功能的新型SPO11同源物OsSPO11D。

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