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A novel factor Iss10 regulates Mmi1-mediated selective elimination of meiotic transcripts

机译:一个新的因子Iss10调节Mmi1介导的减数分裂转录本的选择性消除。

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摘要

A number of meiosis-specific transcripts are selectively eliminated during the mitotic cell cycle in fission yeast. Mmi1, an RNA-binding protein, plays a crucial role in this selective elimination. Mmi1 recognizes a specific region, namely, the determinant of selective removal (DSR) on meiotic transcripts and induces nuclear exosome-mediated elimination. During meiosis, Mmi1 is sequestered by a chromosome-associated dot structure, Mei2 dot, allowing meiosis-specific transcripts to be stably expressed. Red1, a zinc-finger protein, is also known to participate in the Mmi1/DSR elimination system, although its molecular function has remained elusive. To uncover the detailed molecular mechanisms underlying the Mmi1/DSR elimination system, we sought to identify factors that interact genetically with Mmi1. Here, we show that one of the identified factors, Iss10, is involved in the Mmi1/DSR system by regulating the interaction between Mmi1 and Red1. In cells lacking Iss10, association of Red1 with Mmi1 is severely impaired, and target transcripts of Mmi1 are ectopically expressed in the mitotic cycle. During meiosis, Iss10 is downregulated, resulting in dissociation of Red1 from Mmi1 and subsequent suppression of Mmi1 activity.
机译:在裂变酵母的有丝分裂细胞周期中,选择性地消除了许多减数分裂特异的转录本。 Mmi1是一种RNA结合蛋白,在这种选择性消除中起着至关重要的作用。 Mmi1识别特定区域,即减数分裂转录本上的选择性去除(DSR)的决定因素,并诱导核外泌体介导的消除。在减数分裂过程中,Mmi1被染色体相关的点结构Mei2点所隔离,从而稳定表达了减数分裂特异的转录本。 Red1,一种锌指蛋白,也已知参与Mmi1 / DSR消除系统,尽管其分子功能仍然难以捉摸。为了揭示Mmi1 / DSR消除系统背后的详细分子机制,我们试图确定与Mmi1发生遗传相互作用的因素。在这里,我们显示通过调节Mmi1和Red1之间的相互作用,已识别的因素Iss10之一参与了Mmi1 / DSR系统。在缺少Iss10的细胞中,严重破坏了Red1与Mmi1的关联,并且在有丝分裂周期中异位表达了Mmi1的目标转录本。在减数分裂过程中,Iss10被下调,导致Red1与Mmi1分离,并随后抑制Mmi1活性。

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