首页> 外文期刊>Eukaryotic cell >Separation of the Saccharomyces cerevisiae Paf1 Complex from RNA Polymerase II Results in Changes in Its Subnuclear Localization
【24h】

Separation of the Saccharomyces cerevisiae Paf1 Complex from RNA Polymerase II Results in Changes in Its Subnuclear Localization

机译:啤酒酵母Paf1复合体从RNA聚合酶II分离导致其亚核定位的变化。

获取原文
           

摘要

The yeast Paf1 complex (Paf1C), composed of Paf1, Ctr9, Cdc73, Rtf1, and Leo1, associates with RNA polymerase II (Pol II) at promoters and in the actively transcribed portions of mRNA genes. Loss of Paf1 results in severe phenotypes and significantly reduced levels of the other Paf1C components. In contrast, loss of Rtf1 causes relatively subtle phenotypic changes and no reduction in the other Paf1C factors but disrupts the association of these factors with Pol II and chromatin. To elucidate the fate of the Paf1C when dissociated from Pol II, we examined the localization of the Paf1C components in paf1 and rtf1 mutant yeast strains. We found that although the Paf1C factors remain nuclear in paf1 and rtf1 strains, loss of Paf1 or Rtf1 results in a change in the subnuclear distribution of the remaining factors. In wild-type cells, Paf1C components are present in the nucleoplasm but not the nucleolus. In contrast, in both paf1 and rtf1 strains, the remaining factors are found in the nucleolus as well as the nucleoplasm. Loss of Paf1 affects nucleolar function; we observed that expression of MAK21 and RRP12, important for rRNA processing, is reduced concomitant with an increase in rRNA precursors in a paf1 strain. However, these changes are not the result of relocalization of the Paf1C because loss of Rtf1 does not cause similar changes in rRNA processing. Instead, we speculate that the change in localization may reflect a link between the Paf1C and newly synthesized mRNAs as they exit the nucleus.
机译:由Paf1,Ctr9,Cdc73,Rtf1和Leo1组成的酵母Paf1复合物(Paf1C)在启动子和mRNA基因的活跃转录部分与RNA聚合酶II(Pol II)结合。 Paf1的丢失会导致严重的表型,并显着降低其他Paf1C组件的水平。相反,Rtf1的丢失会引起相对细微的表型变化,而其他Paf1C因子却没有减少,但会破坏这些因子与Pol II和染色质的缔合。为了阐明与Pol II分离时Paf1C的命运,我们检查了 paf1 rtf1 突变酵母菌株中Paf1C组件的定位。我们发现,尽管Paf1C因子在 paf1 rtf1 菌株中仍然是核的,但Paf1或Rtf1的缺失会导致其余因子的亚核分布发生变化。在野生型细胞中,Paf1C组分存在于核质中,但不存在于核仁中。相反,在 paf1 rtf1 菌株中,在核仁和核质中都发现了其余因子。 Paf1的丢失影响核仁功能;我们观察到,对于rRNA加工很重要的 MAK21 RRP12 的表达随着 paf1 菌株中rRNA前体的增加而降低。但是,这些变化不是Paf1C重新定位的结果,因为Rtf1的丢失不会在rRNA加工中引起类似的变化。相反,我们推测本地化的变化可能反映了Paf1C和新合成的mRNA离开细胞核之间的联系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号