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首页> 外文期刊>Nature Communications >An epigenetic gene silencing pathway selectively acting on transgenic DNA in the green alga Chlamydomonas
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An epigenetic gene silencing pathway selectively acting on transgenic DNA in the green alga Chlamydomonas

机译:一种在绿藻衣原体中选择性地作用于转基因DNA的表观遗传基因沉默途径

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摘要

Silencing of exogenous DNA can make transgene expression very inefficient. Genetic screens in the model alga Chlamydomonas have demonstrated that transgene silencing can be overcome by mutations in unknown gene(s), thus producing algal strains that stably express foreign genes to high levels. Here, we show that the silencing mechanism specifically acts on transgenic DNA. Once a permissive chromatin structure has assembled, transgene expression can persist even in the absence of mutations disrupting the silencing pathway. We have identified the gene conferring the silencing and show it to encode a sirtuin-type histone deacetylase. Loss of gene function does not appreciably affect endogenous gene expression. Our data suggest that transgenic DNA is recognized and then quickly inactivated by the assembly of a repressive chromatin structure composed of deacetylated histones. We propose that this mechanism may have evolved to provide protection from potentially harmful types of environmental DNA.
机译:外源性DNA的沉默可以使转基因表达非常低效。模型藻类骨髓瘤中的遗传筛表明,可以通过未知基因的突变克服转基因沉默,从而产生稳定表达外源基因的藻类菌株。在这里,我们表明沉默机制专门用于转基因DNA。一旦组装了允许染色质结构,即使在没有破坏沉默途径的情况下,转基因表达也可以持续存在。我们已经鉴定了赋予沉默的基因并显示其编码Sirtuin型组蛋白脱乙酰化酶。基因功能的丧失不会显着影响内源性基因表达。我们的数据表明转基因DNA被认识到,然后通过组装由脱乙酰化的组蛋白组成的压制染色质结构的组装迅速灭活。我们提出这种机制可能已经发展,以提供免受潜在有害的环境DNA的保护。

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