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The JmjC domain of Gis1 is dispensable for transcriptional activation

机译:Gis1的JmjC结构域可用于转录激活

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摘要

Yeast Gis1 protein functions as a transcription factor after nutrient limitation and oxidative stress. In this report, we show that Gis1 also regulates the induction of several genes involved in spore wall synthesis during sporulation. Gis1 contains a JmjC domain near its N-terminus. In many proteins, JmjC domains provide histone demethylase activity. Whether the JmjC domain of Gis1 contributes to its transcriptional activation is still unknown. Here, we show that gis1 point mutations that abolish Fe (II) and l-ketoglutarate binding, known cofactors in other JmjC proteins, are still able to induce transcription normally during glucose starvation and sporulation. Even the deletion of the entire JmjC domain does not affect transcriptional activation by Gis1. Moreover, the JmjC domain is not required for the toxicity associated with Gis1 overexpression. The data demonstrate that the JmjC domain is dispensable for transcriptional activation by Gis1 during nutrient stress and sporulation.
机译:酵母Gis1蛋白在营养限制和氧化应激后起转录因子的作用。在此报告中,我们表明,Gis1还调节孢子形成过程中与孢子壁合成有关的几个基因的诱导。 Gis1在其N端附近包含一个JmjC域。在许多蛋白质中,JmjC结构域提供组蛋白脱甲基酶活性。 Gis1的JmjC结构域是否有助于其转录激活仍是未知的。在这里,我们显示取消Fe(II)和1-ketoglutarate结合(其他JmjC蛋白中的已知辅因子)的gis1点突变仍然能够正常地在葡萄糖饥饿和孢子形成过程中诱导转录。即使整个JmjC结构域的删除也不影响Gis1的转录激活。而且,与Gis1过表达相关的毒性不需要JmjC结构域。数据表明,在营养胁迫和孢子形成过程中,JmjC结构域对于Gis1的转录激活是可有可无的。

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