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The wtf4 meiotic driver utilizes controlled protein aggregation to generate selective cell death

机译:WTF4减数分裂司机利用受控蛋白质聚集产生选择性细胞死亡

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摘要

Meiotic drivers are parasitic loci that force their own transmission into greater than half of the offspring of a heterozygote. Many drivers have been identified, but their molecular mechanisms are largely unknown. The wtf4 gene is a meiotic driver in Schizosaccharomyces pombe that uses a poison-antidote mechanism to selectively kill meiotic products (spores) that do not inherit wtf4. Here, we show that the Wtf4 proteins can function outside of gametogenesis and in a distantly related species, Saccharomyces cerevisiae. The Wtf4poison protein forms dispersed, toxic aggregates. The Wtf4antidote can co-assemble with the Wtf4poison and promote its trafficking to vacuoles. We show that neutralization of the Wtf4poison requires both co-assembly with the Wtf4antidote and aggregate trafficking, as mutations that disrupt either of these processes result in cell death in the presence of the Wtf4 proteins. This work reveals that wtf parasites can exploit protein aggregate management pathways to selectively destroy spores.
机译:减数分裂的司机是寄生基因座,迫使自己的传播到杂合子的后代的大于一半。已经确定了许多司机,但它们的分子机制很大程度上是未知的。 WTF4基因是Schizosaccharomyces Pombe中的减数分裂司机,其使用毒药解毒机制来选择性地杀死不继承WTF4的消耗糖尿病产品(孢子)。在这里,我们表明wtf4蛋白质可以在配子发生器之外和恒定相关的物种外,酿酒酵母酿酒酵母。 WTF4Poison蛋白形成分散,有毒聚集体。 WTF4ANTIDOTE可以与WTF4Poison共同组装,并促进其贩运苍土。我们表明,WTF4Poison的中和需要与WTF4AntIdote和汇总贩运的共同组装,作为破坏这些过程中任一项过程的突变在WTF4蛋白存在下导致细胞死亡。这项工作表明,WTF寄生虫可以利用蛋白质聚集体管理途径来选择性地破坏孢子。

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